ARRB1
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Linkage Regions: 1 Available
| Locus | Species | Chromosomal Location | Mb | Number of genes | Linkage and Congenic Studies |
|---|---|---|---|---|---|
| Idd27 | Mouse | chr7:86521272..127029671 | 40.51 | 634 |
(Human) GRCh37 - chr11:74971166..75062875 (91.71 kb) View in Genome Browser
(Mouse) NCBIM37 - chr7:106683976..106755281 (71.31 kb) View in Genome Browser
(Rat) RGSC3.4 - chr1:156871562..156937540 (65.98 kb) View in Genome Browser
HaemAtlas Expression Table for ARRB1:
Expression Legend
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Cell Types Showing Expression: Available
Users should be aware that the scale represents a rank within an experiment rather than a normalized expression signal.
| Human | Mouse | Rat | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| ductal cells | exocrine pancreas | pancreatic islets | primary beta cells | Pancreatic Islets MPSS | beta cell line | pancreatic islets | whole pancreas | alpha cell | beta cell line | pancreatic islets | primary beta cells | whole pancreas |
| no data | ||||||||||||
Expression Legend
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The Beta Cell Gene Atlas is a collection of almost all available public microarray data generated with pancreatic beta cells and related cell lines and types. The expression data comes from 131 array analyses derived from 28 experiments (open details in a new window). The basal (untreated cell) expression signal intensity values in each array were converted to ranks within the experiments; the highest value was used for genes represented by more than one probe. The rank values of genes in a given cell type were averaged with other calculated values from experiments performed with the same cell type. The rank transformation of the expression values enable comparison of gene expression across different organisms and tissues.
A red border around a cell indicates greater certainty in the data; specifically, the gene has >0.95 probability of being expressed in the tissue.
Tissues Showing Expression: Available
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Expression Legend
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| Signal intensity values were converted to ranks within the experiments. For genes represented by more than one probeset, we averaged the intensity signals for each probeset across all tissues and chose the probeset with the highest average value. The rank transformation of the expression values enables comparison of gene expression across different organisms and tissues. | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Interactions Table for ARRB1:The ARRB1 interactions are shown below. Each row lists the two interactors, the sources which document this as an interaction, a classification of the interaction as empirical or predicted, and Pubmed IDs (if any) for the interaction.
The table of interactions is downloadable as a text file. Please note that the text file will not include data from HPRD due to restrictions imposed by the HPRD funding sources.
| Interactor | Interactor | Sources | Classification | Pubmed IDs |
| ARRB1 | RANBP9 | IntAct | empirical | 17620599 |
| ARRB1 | DNAJB6 | MINT, IntAct | empirical | 15102471 |
| ARRB1 | ARPC5 | IntAct | empirical | 17620599 |
| ARRB1 | G3BP1 | IntAct | empirical | 17620599 |
| ARRB1 | ALYREF | IntAct | empirical | 17620599 |
| ARRB1 | DHRS2 | IntAct | empirical | 17620599 |
| ARRB1 | STUB1 | BioGRID | empirical | 19306926 |
| ARRB1 | RTN3 | MINT, IntAct | empirical | 15102471 |
| ARRB1 | MYL12B | IntAct | empirical | 17620599 |
| ARRB1 | PRMT5 | IntAct | empirical | 17620599 |
| ARRB1 | HAX1 | MINT, IntAct | empirical | 15102471 |
| ARRB1 | IGF2BP2 | IntAct | empirical | 17620599 |
| ARRB1 | CFL1 | IntAct | empirical | 17620599 17500066 |
| ARRB1 | NEK6 | IntAct | empirical | 21988832 |
| ARRB1 | CD3EAP | IntAct | empirical | 17620599 |
| ARRB1 | SPIN1 | IntAct | empirical | 17620599 |
| ARRB1 | CKAP4 | IntAct | empirical | 17620599 |
| ARRB1 | YWHAQ | IntAct | empirical | 17620599 |
| ARRB1 | SF3B2 | IntAct | empirical | 17620599 |
| ARRB1 | KIF2C | IntAct | empirical | 17620599 |
| ARRB1 | CHD1 | BioGRID | empirical | 17353931 |
| ARRB1 | KIF3A | IntAct | empirical | 17620599 |
| ARRB1 | STK38 | IntAct | empirical | 17620599 |
| ARRB1 | CLTA | IntAct | empirical | 17620599 |
| ARRB1 | CLTC | HPRD, IntAct | empirical | 9169477 17620599 |
| ARRB1 | CCR5 | HPRD, BioGRID | empirical | 12065593 |
| ARRB1 | CNGA3 | IntAct | empirical | 17620599 |
| ARRB1 | ADH6 | IntAct | empirical | 21988832 |
| ARRB1 | CMBL | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | STXBP5 | IntAct | empirical | 17620599 |
| ARRB1 | CPA1 | IntAct | empirical | 17620599 |
| ARRB1 | CPNE8 | IntAct | empirical | 17620599 |
| ARRB1 | CSK | HPRD, BioGRID | empirical | 10753943 |
| ARRB1 | CSN2 | IntAct | empirical | 17620599 |
| ARRB1 | CSNK2A1 | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | ADRB1 | HPRD, BioGRID | empirical | 10862778 |
| ARRB1 | ADRB2 | HPRD | empirical | 16407241 |
| ARRB1 | ADRBK1 | HPRD | empirical | 8885248 |
| ARRB1 | DGKG | IntAct | empirical | 17620599 |
| ARRB1 | DGKH | IntAct | empirical | 17620599 |
| ARRB1 | AP2B1 | HPRD | empirical | 11777907 |
| ARRB1 | DKC1 | IntAct | empirical | 17620599 |
| ARRB1 | DMD | IntAct | empirical | 17620599 |
| ARRB1 | DNM1 | IntAct | empirical | 17620599 |
| ARRB1 | AGTR1 | HPRD, MINT | empirical | 11579203 17498700 |
| ARRB1 | DVL1 | HPRD | empirical | 11742073 |
| ARRB1 | DVL2 | HPRD, BioGRID | empirical | 11742073 |
| ARRB1 | EEF1A2 | IntAct | empirical | 17620599 |
| ARRB1 | EIF4B | IntAct | empirical | 17620599 |
| ARRB1 | CTTN | IntAct | empirical | 17620599 |
| ARRB1 | TUBB | IntAct | empirical | 17620599 |
| ARRB1 | AKT1 | IntAct | empirical | 16051150 |
| ARRB1 | F2R | Reactome | predicted | 16580177 |
| ARRB1 | FASN | IntAct | empirical | 17620599 |
| ARRB1 | HNRNPA3 | IntAct | empirical | 17620599 |
| ARRB1 | FGR | HPRD | empirical | 10973280 |
| ARRB1 | STK38L | IntAct | empirical | 17620599 |
| ARRB1 | USP33 | BioGRID | empirical | 19363159 |
| ARRB1 | ZBTB43 | HPRD, MINT, IntAct, BioGRID | empirical | 16189514 |
| ARRB1 | FLNA | HPRD, IntAct | empirical | 16611986 17620599 |
| ARRB1 | MPRIP | IntAct | empirical | 17620599 |
| ARRB1 | RTF1 | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | BOP1 | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | USP24 | IntAct | empirical | 17620599 |
| ARRB1 | PES1 | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | SRRM2 | IntAct | empirical | 17620599 |
| ARRB1 | POLR1A | IntAct | empirical | 17620599 |
| ARRB1 | RAB11FIP5 | IntAct | empirical | 17620599 |
| ARRB1 | KIF26A | IntAct | empirical | 17620599 |
| ARRB1 | AMPD2 | Sanger Interaction Map | predicted | 15345047 |
| ARRB1 | GNMT | HPRD, MINT, IntAct, BioGRID | empirical | 16189514 21988832 |
| ARRB1 | RPL7L1 | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | GSK3B | BioGRID | empirical | 10347142 |
| ARRB1 | GSN | IntAct | empirical | 17620599 |
| ARRB1 | TMOD3 | IntAct | empirical | 17620599 |
| ARRB1 | HIST1H1C | IntAct | empirical | 17620599 |
| ARRB1 | H2AFX | IntAct | empirical | 17620599 |
| ARRB1 | ANXA2 | IntAct | empirical | 17620599 |
| ARRB1 | HCK | HPRD | empirical | 10973280 |
| ARRB1 | HDLBP | IntAct | empirical | 17620599 |
| ARRB1 | ACACA | IntAct | empirical | 17620599 |
| ARRB1 | HIST2H2AB | IntAct | empirical | 17620599 |
| ARRB1 | HNRNPA1 | MINT, IntAct | empirical | 17620599 15102471 |
| ARRB1 | HNRNPH1 | IntAct | empirical | 17620599 |
| ARRB1 | HNRNPK | IntAct | empirical | 17620599 |
| ARRB1 | HNRNPU | IntAct | empirical | 17620599 |
| ARRB1 | HSPA5 | IntAct | empirical | 17620599 |
| ARRB1 | HSPA7 | IntAct | empirical | 17620599 |
| ARRB1 | HSPA8 | IntAct | empirical | 17620599 |
| ARRB1 | HSPA9 | IntAct | empirical | 17620599 |
| ARRB1 | HSP90AA1 | IntAct | empirical | 17620599 |
| ARRB1 | APLP1 | IntAct | empirical | 17620599 |
| ARRB1 | ACTBL2 | IntAct | empirical | 17620599 |
| ARRB1 | IGF1R | BioGRID | empirical | 12167719 |
| ARRB1 | CXCR2 | HPRD, BioGRID | empirical | 11170396 |
| ARRB1 | JAK1 | BioGRID | empirical | 17353931 |
| ARRB1 | JUN | IntAct, BioGRID | empirical | 20936779 |
| ARRB1 | KHK | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | ARF6 | HPRD, BioGRID | empirical | 11533043 11867621 |
| ARRB1 | KPNA3 | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | KTN1 | IntAct | empirical | 17620599 |
| ARRB1 | LIMK1 | IntAct | empirical | 17500066 |
| ARRB1 | LRP4 | IntAct | empirical | 17620599 |
| ARRB1 | ARR3 | IntAct, BioGRID | empirical | 17353931 17620599 |
| ARRB1 | ARRB1 | IntAct | empirical | 17620599 |
| ARRB1 | ARRB2 | IntAct, BioGRID | empirical | 17353931 17620599 |
| ARRB1 | MAP1B | IntAct | empirical | 17620599 |
| ARRB1 | MATN2 | MINT, IntAct | empirical | 15102471 |
| ARRB1 | MDM2 | MINT, IntAct, BioGRID | empirical | 19879840 15102471 12538596 18544533 11588219 |
| ARRB1 | MAP3K1 | IntAct | empirical | 17620599 |
| ARRB1 | MAP3K5 | BioGRID | empirical | 19306926 |
| ARRB1 | POTEKP | IntAct | empirical | 17620599 |
| ARRB1 | MT1A | MINT | empirical | 16778767 |
| ARRB1 | MYH1 | IntAct | empirical | 17620599 |
| ARRB1 | MYH9 | IntAct | empirical | 17620599 |
| ARRB1 | MYL6 | IntAct | empirical | 17620599 |
| ARRB1 | MYO1C | IntAct | empirical | 17620599 |
| ARRB1 | HNRNPM | IntAct | empirical | 17620599 |
| ARRB1 | NCL | IntAct | empirical | 17620599 |
| ARRB1 | NDUFS1 | IntAct | empirical | 17620599 |
| ARRB1 | NFE2L2 | MINT, IntAct | empirical | 15102471 |
| ARRB1 | NFKBIA | HPRD, IntAct | empirical | 15125834 15173580 19879840 |
| ARRB1 | NPM1 | IntAct | empirical | 17620599 |
| ARRB1 | YBX1 | IntAct | empirical | 17620599 |
| ARRB1 | NSF | HPRD, BioGRID | empirical | 10196135 |
| ARRB1 | ATP5A1 | IntAct | empirical | 17620599 |
| ARRB1 | OPRD1 | HPRD, BioGRID | empirical | 11259507 |
| ARRB1 | P4HB | IntAct | empirical | 17620599 |
| ARRB1 | ATP5B | IntAct | empirical | 17620599 |
| ARRB1 | PARK2 | BioGRID | empirical | 21466165 |
| ARRB1 | KCTD3 | IntAct | empirical | 17620599 |
| ARRB1 | PLA1A | IntAct | empirical | 17620599 |
| ARRB1 | PDE4D | BioGRID | empirical | 19372219 |
| ARRB1 | LIMA1 | IntAct | empirical | 17620599 |
| ARRB1 | PFKFB3 | IntAct | empirical | 17620599 |
| ARRB1 | PIK3C2A | IntAct | empirical | 17620599 |
| ARRB1 | PIK3R2 | IntAct | empirical | 17620599 21988832 |
| ARRB1 | PKM2 | IntAct | empirical | 17620599 |
| ARRB1 | LRP1B | IntAct | empirical | 17620599 |
| ARRB1 | POLR2E | IntAct | empirical | 17620599 |
| ARRB1 | ATR | IntAct | empirical | 17620599 |
| ARRB1 | PPIA | IntAct | empirical | 17620599 |
| ARRB1 | PPM1A | IntAct | empirical | 17620599 |
| ARRB1 | PPM1B | IntAct | empirical | 17620599 |
| ARRB1 | C9orf68 | Sanger Interaction Map | predicted | 15345047 |
| ARRB1 | NOP10 | IntAct | empirical | 17620599 |
| ARRB1 | DNAH3 | IntAct | empirical | 17620599 |
| ARRB1 | DDX27 | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | SCYL2 | IntAct | empirical | 17620599 |
| ARRB1 | MAPK1 | HPRD, BioGRID | empirical | 10347142 9388255 |
| ARRB1 | MAPK3 | HPRD, BioGRID | empirical | 10347142 9388255 |
| ARRB1 | MAPK9 | IntAct | empirical | 21988832 |
| ARRB1 | MAPK10 | IntAct, BioGRID | empirical | 19879840 11356842 |
| ARRB1 | PDXP | IntAct | empirical | 17500066 |
| ARRB1 | BAG1 | IntAct | empirical | 21988832 |
| ARRB1 | PTHLH | HPRD, BioGRID | empirical | 12220636 |
| ARRB1 | PTH1R | HPRD | empirical | 12220636 |
| ARRB1 | ACTA1 | IntAct | empirical | 17620599 |
| ARRB1 | RAB1A | IntAct | empirical | 17620599 |
| ARRB1 | RALGDS | HPRD, BioGRID | empirical | 12105416 |
| ARRB1 | TRPV4 | BioGRID | empirical | 20650893 |
| ARRB1 | RGS3 | IntAct | empirical | 17620599 |
| ARRB1 | ACTB | IntAct | empirical | 17620599 |
| ARRB1 | BACH2 | IntAct | empirical | 17620599 |
| ARRB1 | ROCK1 | IntAct | empirical | 17620599 |
| ARRB1 | RPL3 | IntAct | empirical | 17620599 |
| ARRB1 | RPL6 | IntAct | empirical | 17620599 |
| ARRB1 | RPL7A | IntAct | empirical | 17620599 |
| ARRB1 | RPL15 | IntAct | empirical | 21988832 |
| ARRB1 | RPL22 | IntAct | empirical | 17620599 |
| ARRB1 | RPS2 | IntAct | empirical | 17620599 |
| ARRB1 | RPS3A | IntAct | empirical | 17620599 |
| ARRB1 | RPS8 | IntAct | empirical | 17620599 |
| ARRB1 | RPS17 | IntAct | empirical | 17620599 |
| ARRB1 | RPS27A | IntAct | empirical | 17620599 |
| ARRB1 | S100A9 | IntAct | empirical | 17620599 |
| ARRB1 | SAG | IntAct | empirical | 17620599 |
| ARRB1 | CCL14 | IntAct | empirical | 17353931 |
| ARRB1 | POLR1E | IntAct | empirical | 17620599 |
| ARRB1 | SLC9A1 | BioGRID | empirical | 20855896 |
| ARRB1 | SLC9A5 | HPRD | empirical | 15699339 |
| ARRB1 | BMPR2 | MINT, IntAct | empirical | 15102471 |
| ARRB1 | SNRPD1 | IntAct | empirical | 17620599 |
| ARRB1 | SON | MINT, IntAct | empirical | 15102471 |
| ARRB1 | SPTAN1 | IntAct | empirical | 17620599 |
| ARRB1 | SREBF2 | IntAct, BioGRID | empirical | 20936779 |
| ARRB1 | TCOF1 | IntAct, BioGRID | empirical | 17353931 17620599 |
| ARRB1 | BTK | IntAct | empirical | 21988832 |
| ARRB1 | TMPO | IntAct | empirical | 17620599 |
| ARRB1 | TOP2A | MINT, IntAct | empirical | 15102471 |
| ARRB1 | TPM4 | IntAct | empirical | 17620599 |
| ARRB1 | TRAF6 | IntAct | empirical | 19879840 |
| ARRB1 | TRHR | HPRD | empirical | 12393857 11278883 |
| ARRB1 | TTN | IntAct | empirical | 17620599 |
| ARRB1 | TUBA4A | IntAct | empirical | 17620599 |
| ARRB1 | C5AR1 | HPRD | empirical | 12464600 |
| ARRB1 | TUBB2A | IntAct | empirical | 17620599 |
| ARRB1 | UBA52 | IntAct | empirical | 17620599 |
| ARRB1 | UBB | IntAct | empirical | 17620599 |
| ARRB1 | UBC | IntAct, BioGRID | empirical | 17620599 19372219 |
| ARRB1 | VIM | MINT, IntAct | empirical | 17620599 15102471 |
| ARRB1 | XRCC5 | IntAct | empirical | 17620599 |
| ARRB1 | YES1 | IntAct | empirical | 17620599 |
| ARRB1 | YY1 | IntAct | empirical | 19879840 |
| ARRB1 | YWHAB | IntAct | empirical | 17620599 |
| ARRB1 | YWHAE | IntAct | empirical | 17620599 |
| ARRB1 | YWHAG | IntAct | empirical | 17620599 |
| ARRB1 | YWHAH | IntAct | empirical | 17620599 |
| ARRB1 | YWHAZ | IntAct | empirical | 17620599 |
| ARRB1 | ZYX | IntAct | empirical | 17620599 |
| ARRB1 | WDR77 | IntAct | empirical | 17620599 |
| ARRB1 | CALD1 | IntAct | empirical | 17620599 |
| ARRB1 | STAM | BioGRID | empirical | 20505072 |
| ARRB1 | RBM10 | IntAct | empirical | 17620599 |
| ARRB1 | NAA10 | IntAct, BioGRID | empirical | 20360068 |
| ARRB1 | HIST1H2BO | IntAct | empirical | 17620599 |
| ARRB1 | ITCH | BioGRID | empirical | 18544533 |
| ARRB1 | TAGLN2 | Sanger Interaction Map | predicted | 15345047 |
| ARRB1 | GNPAT | MINT, IntAct | empirical | 15102471 |
| ARRB1 | DPY30 | IntAct | empirical | 17620599 |
| ARRB1 | HDGFRP2 | IntAct, BioGRID | empirical | 17353931 17620599 |
| ARRB1 | TUBA1C | IntAct | empirical | 17620599 |
| ARRB1 | DGKZ | IntAct | empirical | 17620599 |
| ARRB1 | DGKE | IntAct | empirical | 17620599 |
| ARRB1 | AP3B1 | IntAct, BioGRID | empirical | 17353931 |
| ARRB1 | PTCH2 | IntAct | empirical | 17620599 |
| ARRB1 | EIF3I | IntAct | empirical | 17620599 |
| ARRB1 | CD164 | MINT, IntAct | empirical | 15102471 |
| ARRB1 | PRPF4B | IntAct | empirical | 17620599 |
| ARRB1 | AP3D1 | IntAct | empirical | 17620599 |
| ARRB1 | H1FX | IntAct | empirical | 17620599 |
| ARRB1 | INA | IntAct | empirical | 17620599 |
| ARRB1 | HGS | BioGRID | empirical | 20505072 |
| ARRB1 | NOLC1 | IntAct, BioGRID | empirical | 17353931 17620599 |
| ARRB1 | CYTH2 | HPRD, BioGRID | empirical | 11533043 |
| ARRB1 | ZRANB2 | IntAct, BioGRID | empirical | 17353931 17620599 |
| ARRB1 | POLR1C | IntAct | empirical | 17620599 |
| ARRB1 | SDC3 | IntAct | empirical | 17620599 |
| ARRB1 | ARHGAP32 | IntAct | empirical | 17620599 |
| ARRB1 | BCLAF1 | IntAct | empirical | 17620599 |
| ARRB1 | THRAP3 | IntAct | empirical | 17620599 |
| ARRB1 | CDC42 | IntAct, BioGRID | empirical | 20936779 |
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Type 1 Diabetes Publications: 3
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GLP-1 mediates anti-apoptotic effect by phosphorylating bad through a beta-arrestin 1-mediated ERK1/2 activation in pancreatic [beta]-cells.
Quoyer J, Longuet C, Broca C, Linck N, Costes S, Varin E, Bockaert J, Bertrand G, Dalle S
J Biol Chem. 2009
PubMed ID: 19915011
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beta-Arrestin 1 is required for PAC1 receptor-mediated potentiation of long-lasting ERK1/2 activation by glucose in pancreatic beta-cells.
Broca C, Quoyer J, Costes S, Linck N, Varrault A, Deffayet PM, Bockaert J, Dalle S, Bertrand G
J Biol Chem. 2009
PubMed ID: 19074139
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Beta-Arrestin-1 mediates glucagon-like peptide-1 signaling to insulin secretion in cultured pancreatic beta cells.
Sonoda N, Imamura T, Yoshizaki T, Babendure JL, Lu JC, Olefsky JM
Proc Natl Acad Sci U S A. 2008
PubMed ID: 18445652
Publications: 277
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Activated protein C promotes protease-activated receptor-1 cytoprotective signaling through β-arrestin and dishevelled-2 scaffolds.
Soh UJ, Trejo J
Proc Natl Acad Sci U S A. 2011
PubMed ID: 22106258
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Gender related alterations of β-adrenoceptor mechanisms in heart failure due to arteriovenous fistula.
Dent MR, Tappia PS, Dhalla NS
J Cell Physiol. 2011
PubMed ID: 22015551
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Increased expression of beta-arrestin 1 and 2 in murine models of rheumatoid arthritis: isoform specific regulation of inflammation.
Li P, Cook JA, Gilkeson GS, Luttrell LM, Wang L, Borg KT, Halushka PV, Fan H
Mol Immunol. 2011
PubMed ID: 21855149
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Rapid dephosphorylation of G protein-coupled receptors by protein phosphatase 1β is required for termination of β-arrestin-dependent signaling.
Pöll F, Doll C, Schulz S
J Biol Chem. 2011
PubMed ID: 21795688
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A stress response pathway regulates DNA damage through β2-adrenoreceptors and β-arrestin-1.
Hara MR, Kovacs JJ, Whalen EJ, Rajagopal S, Strachan RT, Grant W, Towers AJ, Williams B, Lam CM, Xiao K, Shenoy SK, Gregory SG, Ahn S, Duckett DR, Lefkowitz RJ
Nature. 2011
PubMed ID: 21857681
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Agonist-directed interactions with specific beta-arrestins determine mu-opioid receptor trafficking, ubiquitination, and dephosphorylation.
Groer CE, Schmid CL, Jaeger AM, Bohn LM
J Biol Chem. 2011
PubMed ID: 21757712
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Disruption of β-arrestins blocks glucocorticoid receptor and severely retards lung and liver development in mice.
Zhang M, Teng H, Shi J, Zhang Y
Mech Dev. 2011
PubMed ID: 21824517
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Beta-arrestin-1 protein represses adipogenesis and inflammatory responses through its interaction with peroxisome proliferator-activated receptor-gamma (PPARgamma).
Zhuang LN, Hu WX, Xin SM, Zhao J, Pei G
J Biol Chem. 2011
PubMed ID: 21700709
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Beta-arrestin-1 protein represses diet-induced obesity.
Zhuang LN, Hu WX, Zhang ML, Xin SM, Jia WP, Zhao J, Pei G
J Biol Chem. 2011
PubMed ID: 21543334
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A conditional knockout resource for the genome-wide study of mouse gene function.
Skarnes WC, Rosen B, West AP, Koutsourakis M, Bushell W, Iyer V, Mujica AO, Thomas M, Harrow J, Cox T, Jackson D, Severin J, Biggs P, Fu J, Nefedov M, de Jong PJ, Stewart AF, Bradley A
Nature. 2011
PubMed ID: 21677750
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The beta-arrestin pathway-selective type 1A angiotensin receptor (AT1A) agonist [Sar1,Ile4,Ile8]angiotensin II regulates a robust G protein-independent signaling network.
Kendall RT, Strungs EG, Rachidi SM, Lee MH, El-Shewy HM, Luttrell DK, Janech MG, Luttrell LM
J Biol Chem. 2011
PubMed ID: 21502318
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EGFR trans-activation by urotensin II receptor is mediated by β-arrestin recruitment and confers cardioprotection in pressure overload-induced cardiac hypertrophy.
Esposito G, Perrino C, Cannavo A, Schiattarella GG, Borgia F, Sannino A, Pironti G, Gargiulo G, Di Serafino L, Franzone A, Scudiero L, Grieco P, Indolfi C, Chiariello M
Basic Res Cardiol. 2011
PubMed ID: 21369867
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β-Arrestin 1 modulates functions of autoimmune T cells from primary biliary cirrhosis patients.
Hu Z, Huang Y, Liu Y, Sun Y, Zhou Y, Gu M, Chen Y, Xia R, Chen S, Deng A, Zhong R
J Clin Immunol. 2011
PubMed ID: 21243522
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Ubiquitin ligase parkin promotes Mdm2-arrestin interaction but inhibits arrestin ubiquitination.
Ahmed MR, Zhan X, Song X, Kook S, Gurevich VV, Gurevich EV
Biochemistry. 2011
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Elevated β-arrestin1 expression correlated with risk stratification in acute lymphoblastic leukemia.
Liu H, Long J, Zhang PH, Li K, Tan JJ, Sun B, Yu J, Tu ZG, Zou L
Int J Hematol. 2011
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Neurotensin triggers dopamine D2 receptor desensitization through a protein kinase C and beta-arrestin1-dependent mechanism.
Thibault D, Albert PR, Pineyro G, Trudeau LÉ
J Biol Chem. 2011
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β-arrestin deficiency protects against pulmonary fibrosis in mice and prevents fibroblast invasion of extracellular matrix.
Lovgren AK, Kovacs JJ, Xie T, Potts EN, Li Y, Foster WM, Liang J, Meltzer EB, Jiang D, Lefkowitz RJ, Noble PW
Sci Transl Med. 2011
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β-Arrestin mediates oxytocin receptor signaling, which regulates uterine contractility and cellular migration.
Grotegut CA, Feng L, Mao L, Heine RP, Murtha AP, Rockman HA
Am J Physiol Endocrinol Metab. 2011
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ARRB1-mediated regulation of E2F target genes in nicotine-induced growth of lung tumors.
Dasgupta P, Rizwani W, Pillai S, Davis R, Banerjee S, Hug K, Lloyd M, Coppola D, Haura E, Chellappan SP
J Natl Cancer Inst. 2011
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Interaction of profilin-1 and F-actin via a β-arrestin-1/JNK signaling pathway involved in prostaglandin E(2)-induced human mesenchymal stem cells migration and proliferation.
Yun SP, Ryu JM, Jang MW, Han HJ
J Cell Physiol. 2011
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The expression change of β-arrestins in fibroblast-like synoviocytes from rats with collagen-induced arthritis and the effect of total glucosides of paeony.
Wang QT, Zhang LL, Wu HX, Wei W
J Ethnopharmacol. 2011
PubMed ID: 20965243
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Adrenal beta-arrestin 1 inhibition in vivo attenuates post-myocardial infarction progression to heart failure and adverse remodeling via reduction of circulating aldosterone levels.
Lymperopoulos A, Rengo G, Zincarelli C, Kim J, Koch WJ
J Am Coll Cardiol. 2011
PubMed ID: 21232674
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Multiple scaffolding functions of {beta}-arrestins in the degradation of G protein-coupled receptor kinase 2.
Nogués L, Salcedo A, Mayor F, Penela P
J Biol Chem. 2011
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Distinct functional outputs of PTEN signalling are controlled by dynamic association with β-arrestins.
Lima-Fernandes E, Enslen H, Camand E, Kotelevets L, Boularan C, Achour L, Benmerah A, Gibson LC, Baillie GS, Pitcher JA, Chastre E, Etienne-Manneville S, Marullo S, Scott MG
EMBO J. 2011
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Distinct and shared roles of β-arrestin-1 and β-arrestin-2 on the regulation of C3a receptor signaling in human mast cells.
Vibhuti A, Gupta K, Subramanian H, Guo Q, Ali H
PLoS One. 2011
PubMed ID: 21589858
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β-Arrestin1 mediates the endocytosis and functions of macrophage migration inhibitory factor.
Xie L, Qiao X, Wu Y, Tang J
PLoS One. 2011
PubMed ID: 21283538
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Initial characterization of the human central proteome.
Burkard TR, Planyavsky M, Kaupe I, Breitwieser FP, Bürckstümmer T, Bennett KL, Superti-Furga G, Colinge J
BMC Syst Biol. 2011
PubMed ID: 21269460
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A high-resolution anatomical atlas of the transcriptome in the mouse embryo.
Diez-Roux G, Banfi S, Sultan M, Geffers L, Anand S, Rozado D, Magen A, Canidio E, Pagani M, Peluso I, Lin-Marq N, Koch M, Bilio M, Cantiello I, Verde R, De Masi C, Bianchi SA, Cicchini J, Perroud E, Mehmeti S, Dagand E, Schrinner S, Nürnberger A, Schmidt K, Metz K, Zwingmann C, Brieske N, Springer C, Hernandez AM, Herzog S, Grabbe F, Sieverding C, Fischer B, Schrader K, Brockmeyer M, Dettmer S, Helbig C, Alunni V, Battaini MA, Mura C, Henrichsen CN, Garcia-Lopez R, Echevarria D, Puelles E, Garcia-Calero E, Kruse S, Uhr M, Kauck C, Feng G, Milyaev N, Ong CK, Kumar L, Lam M, Semple CA, Gyenesei A, Mundlos S, Radelof U, Lehrach H, Sarmientos P, Reymond A, Davidson DR, Dollé P, Antonarakis SE, Yaspo ML, Martinez S, Baldock RA, Eichele G, Ballabio A
PLoS Biol. 2011
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Preferential β-arrestin signalling at low receptor density revealed by functional characterization of the human FSH receptor A189 V mutation.
Tranchant T, Durand G, Gauthier C, Crépieux P, Ulloa-Aguirre A, Royère D, Reiter E
Mol Cell Endocrinol. 2011
PubMed ID: 20801186
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The prostaglandin E2 receptor, EP2, stimulates keratinocyte proliferation in mouse skin by G protein-dependent and {beta}-arrestin1-dependent signaling pathways.
Chun KS, Lao HC, Langenbach R
J Biol Chem. 2010
PubMed ID: 20959465
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The peptidomimetic CXCR4 antagonist TC14012 recruits beta-arrestin to CXCR7: roles of receptor domains.
Gravel S, Malouf C, Boulais PE, Berchiche YA, Oishi S, Fujii N, Leduc R, Sinnett D, Heveker N
J Biol Chem. 2010
PubMed ID: 20956518
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Nedd4-1 and beta-arrestin-1 are key regulators of Na+/H+ exchanger 1 ubiquitylation, endocytosis, and function.
Simonin A, Fuster D
J Biol Chem. 2010
PubMed ID: 20855896
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Regulation of lipopolysaccharide-induced inflammatory response and endotoxemia by beta-arrestins.
Porter KJ, Gonipeta B, Parvataneni S, Appledorn DM, Patial S, Sharma D, Gangur V, Amalfitano A, Parameswaran N
J Cell Physiol. 2010
PubMed ID: 20589830
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[Pathogenetic mechanism of beta-arrestin1 in experimental colitis of rats and intervention effects of oxymatrine].
Liao Y, Fan H, Chen XY
Zhongguo Zhong Xi Yi Jie He Za Zhi. 2010
PubMed ID: 21066892
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A human MAP kinase interactome.
Bandyopadhyay S, Chiang CY, Srivastava J, Gersten M, White S, Bell R, Kurschner C, Martin CH, Smoot M, Sahasrabudhe S, Barber DL, Chanda SK, Ideker T
Nat Methods. 2010
PubMed ID: 20936779
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β-Arrestin-1 links mitogenic sonic hedgehog signaling to the cell cycle exit machinery in neural precursors.
Parathath SR, Mainwaring LA, Fernandez-L A, Guldal CG, Nahlé Z, Kenney AM
Cell Cycle. 2010
PubMed ID: 20935513
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Arresting a transient receptor potential (TRP) channel: beta-arrestin 1 mediates ubiquitination and functional down-regulation of TRPV4.
Shukla AK, Kim J, Ahn S, Xiao K, Shenoy SK, Liedtke W, Lefkowitz RJ
J Biol Chem. 2010
PubMed ID: 20650893
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Beta-arrestin-1 mediates the endothelin-1-induced activation of Akt and integrin-linked kinase.
Cianfrocca R, Rosanò L, Spinella F, Di Castro V, Natali PG, Bagnato A
Can J Physiol Pharmacol. 2010
PubMed ID: 20725137
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Arrestin-2 interacts with the endosomal sorting complex required for transport machinery to modulate endosomal sorting of CXCR4.
Malik R, Marchese A
Mol Biol Cell. 2010
PubMed ID: 20505072
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Personalized smoking cessation: interactions between nicotine dose, dependence and quit-success genotype score.
Rose JE, Behm FM, Drgon T, Johnson C, Uhl GR
Mol Med. 2010
PubMed ID: 20379614
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beta-Arrestins scaffold cofilin with chronophin to direct localized actin filament severing and membrane protrusions downstream of protease-activated receptor-2.
Zoudilova M, Min J, Richards HL, Carter D, Huang T, DeFea KA
J Biol Chem. 2010
PubMed ID: 20207744
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beta-Arrestin-dependent activation of Ca(2+)/calmodulin kinase II after beta(1)-adrenergic receptor stimulation.
Mangmool S, Shukla AK, Rockman HA
J Cell Biol. 2010
PubMed ID: 20421423
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Systematic analysis of human protein complexes identifies chromosome segregation proteins.
Hutchins JR, Toyoda Y, Hegemann B, Poser I, Hériché JK, Sykora MM, Augsburg M, Hudecz O, Buschhorn BA, Bulkescher J, Conrad C, Comartin D, Schleiffer A, Sarov M, Pozniakovsky A, Slabicki MM, Schloissnig S, Steinmacher I, Leuschner M, Ssykor A, Lawo S, Pelletier L, Stark H, Nasmyth K, Ellenberg J, Durbin R, Buchholz F, Mechtler K, Hyman AA, Peters JM
Science. 2010
PubMed ID: 20360068
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The fate of the internalized apelin receptor is determined by different isoforms of apelin mediating differential interaction with beta-arrestin.
Lee DK, Ferguson SS, George SR, O'Dowd BF
Biochem Biophys Res Commun. 2010
PubMed ID: 20353754
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Prostaglandin E2 promotes lung cancer cell migration via EP4-betaArrestin1-c-Src signalsome.
Kim JI, Lakshmikanthan V, Frilot N, Daaka Y
Mol Cancer Res. 2010
PubMed ID: 20353998
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Cross talk between phosphatidylinositol 3-kinase and cyclic AMP (cAMP)-protein kinase a signaling pathways at the level of a protein kinase B/beta-arrestin/cAMP phosphodiesterase 4 complex.
Bjørgo E, Solheim SA, Abrahamsen H, Baillie GS, Brown KM, Berge T, Okkenhaug K, Houslay MD, Taskén K
Mol Cell Biol. 2010
PubMed ID: 20086095
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Loss of betaarrestin1 and betaarrestin2 contributes to pulmonary hypoplasia and neonatal lethality in mice.
Zhang M, Liu X, Zhang Y, Zhao J
Dev Biol. 2010
PubMed ID: 20060823
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Control of rhodopsin's active lifetime by arrestin-1 expression in mammalian rods.
Gross OP, Burns ME
J Neurosci. 2010
PubMed ID: 20203204
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Custom-designed proteins as novel therapeutic tools? The case of arrestins.
Gurevich VV, Gurevich EV
Expert Rev Mol Med. 2010
PubMed ID: 20412604
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beta-Arrestins modulate Adenovirus-vector-induced innate immune responses: differential regulation by beta-arrestin-1 and beta-arrestin-2.
Seregin SS, Appledorn DM, Patial S, Bujold M, Nance W, Godbehere S, Parameswaran N, Amalfitano A
Virus Res. 2010
PubMed ID: 19896992
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Inhibition of dynamin prevents CCL2-mediated endocytosis of CCR2 and activation of ERK1/2.
GarcÃa Lopez MA, Aguado MartÃnez A, Lamaze C, MartÃnez-A C, Fischer T
Cell Signal. 2009
PubMed ID: 19643177
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Beta-arrestin1 regulates zebrafish hematopoiesis through binding to YY1 and relieving polycomb group repression.
Yue R, Kang J, Zhao C, Hu W, Tang Y, Liu X, Pei G
Cell. 2009
PubMed ID: 19879840
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A scanning peptide array approach uncovers association sites within the JNK/beta arrestin signalling complex.
Li X, MacLeod R, Dunlop AJ, Edwards HV, Advant N, Gibson LC, Devine NM, Brown KM, Adams DR, Houslay MD, Baillie GS
FEBS Lett. 2009
PubMed ID: 19782076
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An arrestin-dependent multi-kinase signaling complex mediates MIP-1beta/CCL4 signaling and chemotaxis of primary human macrophages.
Cheung R, Malik M, Ravyn V, Tomkowicz B, Ptasznik A, Collman RG
J Leukoc Biol. 2009
PubMed ID: 19620252
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Arrestin competition influences the kinetics and variability of the single-photon responses of mammalian rod photoreceptors.
Doan T, Azevedo AW, Hurley JB, Rieke F
J Neurosci. 2009
PubMed ID: 19776273
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Beta-arrestin1 phosphorylation by GRK5 regulates G protein-independent 5-HT4 receptor signalling.
Barthet G, Carrat G, Cassier E, Barker B, Gaven F, Pillot M, Framery B, Pellissier LP, Augier J, Kang DS, Claeysen S, Reiter E, Banères JL, Benovic JL, Marin P, Bockaert J, Dumuis A
EMBO J. 2009
PubMed ID: 19661922
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The prostaglandin receptor EP2 activates multiple signaling pathways and beta-arrestin1 complex formation during mouse skin papilloma development.
Chun KS, Lao HC, Trempus CS, Okada M, Langenbach R
Carcinogenesis. 2009
PubMed ID: 19587094
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Endosomal endothelin-converting enzyme-1: a regulator of beta-arrestin-dependent ERK signaling.
Cottrell GS, Padilla BE, Amadesi S, Poole DP, Murphy JE, Hardt M, Roosterman D, Steinhoff M, Bunnett NW
J Biol Chem. 2009
PubMed ID: 19531493
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beta-Arrestin mediates beta1-adrenergic receptor-epidermal growth factor receptor interaction and downstream signaling.
Tilley DG, Kim IM, Patel PA, Violin JD, Rockman HA
J Biol Chem. 2009
PubMed ID: 19509284
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Beta-arrestin/Ral signaling regulates lysophosphatidic acid-mediated migration and invasion of human breast tumor cells.
Li TT, Alemayehu M, Aziziyeh AI, Pape C, Pampillo M, Postovit LM, Mills GB, Babwah AV, Bhattacharya M
Mol Cancer Res. 2009
PubMed ID: 19609003
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beta-Arrestins facilitate ubiquitin-dependent degradation of apoptosis signal-regulating kinase 1 (ASK1) and attenuate H2O2-induced apoptosis.
Zhang Z, Hao J, Zhao Z, Ben P, Fang F, Shi L, Gao Y, Liu J, Wen C, Luo L, Yin Z
Cell Signal. 2009
PubMed ID: 19306926
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Mdm2 directs the ubiquitination of beta-arrestin-sequestered cAMP phosphodiesterase-4D5.
Li X, Baillie GS, Houslay MD
J Biol Chem. 2009
PubMed ID: 19372219
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Lys-N and trypsin cover complementary parts of the phosphoproteome in a refined SCX-based approach.
Gauci S, Helbig AO, Slijper M, Krijgsveld J, Heck AJ, Mohammed S
Anal Chem. 2009
PubMed ID: 19413330
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A High-Density Association Study of 383 Candidate Genes for Volumetric Bone Density at the Femoral Neck and Lumbar Spine among Older Men.
Yerges LM, Klei L, Cauley JA, Roeder K, Kammerer CM, Moffett SP, Ensrud KE, Nestlerode CS, Marshall LM, Hoffman AR, Lewis C, Lang TF, Barrett-Connor E, Ferrell RE, Orwoll ES, Zmuda JM, for the MrOS Research Group
J Bone Miner Res. 2009
PubMed ID: 19453261
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Lineage-specific biology revealed by a finished genome assembly of the mouse.
Church DM, Goodstadt L, Hillier LW, Zody MC, Goldstein S, She X, Bult CJ, Agarwala R, Cherry JL, DiCuccio M, Hlavina W, Kapustin Y, Meric P, Maglott D, Birtle Z, Marques AC, Graves T, Zhou S, Teague B, Potamousis K, Churas C, Place M, Herschleb J, Runnheim R, Forrest D, Amos-Landgraf J, Schwartz DC, Cheng Z, Lindblad-Toh K, Eichler EE, Ponting CP, Mouse Genome Sequencing Consortium
PLoS Biol. 2009
PubMed ID: 19468303
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Dephosphorylation of beta-arrestin 1 in glioblastomas.
Mandell JW, Glass G, Gianchandani EP, Locke CN, Amos S, Bourne TD, Schiff D, Papin JA
J Neuropathol Exp Neurol. 2009
PubMed ID: 19404096
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beta-Arrestin1 mediates nicotinic acid-induced flushing, but not its antilipolytic effect, in mice.
Walters RW, Shukla AK, Kovacs JJ, Violin JD, DeWire SM, Lam CM, Chen JR, Muehlbauer MJ, Whalen EJ, Lefkowitz RJ
J Clin Invest. 2009
PubMed ID: 19349687
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Prolonged RXFP1 and RXFP2 signaling can be explained by poor internalization and a lack of beta-arrestin recruitment.
Callander GE, Thomas WG, Bathgate RA
Am J Physiol Cell Physiol. 2009
PubMed ID: 19279230
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Independent beta-arrestin2 and Gq/protein kinase Czeta pathways for ERK stimulated by angiotensin type 1A receptors in vascular smooth muscle cells converge on transactivation of the epidermal growth factor receptor.
Kim J, Ahn S, Rajagopal K, Lefkowitz RJ
J Biol Chem. 2009
PubMed ID: 19254952
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GRK mythology: G-protein receptor kinases in cardiovascular disease.
Dorn GW
J Mol Med (Berl). 2009
PubMed ID: 19229505
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Enhanced arrestin facilitates recovery and protects rods lacking rhodopsin phosphorylation.
Song X, Vishnivetskiy SA, Gross OP, Emelianoff K, Mendez A, Chen J, Gurevich EV, Burns ME, Gurevich VV
Curr Biol. 2009
PubMed ID: 19361994
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MEK1 binds directly to betaarrestin1, influencing both its phosphorylation by ERK and the timing of its isoprenaline-stimulated internalization.
Meng D, Lynch MJ, Huston E, Beyermann M, Eichhorst J, Adams DR, Klusmann E, Houslay MD, Baillie GS
J Biol Chem. 2009
PubMed ID: 19153083
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Beta-arrestin-dependent signaling and trafficking of 7-transmembrane receptors is reciprocally regulated by the deubiquitinase USP33 and the E3 ligase Mdm2.
Shenoy SK, Modi AS, Shukla AK, Xiao K, Berthouze M, Ahn S, Wilkinson KD, Miller WE, Lefkowitz RJ
Proc Natl Acad Sci U S A. 2009
PubMed ID: 19363159
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An adrenal beta-arrestin 1-mediated signaling pathway underlies angiotensin II-induced aldosterone production in vitro and in vivo.
Lymperopoulos A, Rengo G, Zincarelli C, Kim J, Soltys S, Koch WJ
Proc Natl Acad Sci U S A. 2009
PubMed ID: 19289825
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17beta-estradiol-mediated neuroprotection and ERK activation require a pertussis toxin-sensitive mechanism involving GRK2 and beta-arrestin-1.
Dominguez R, Hu E, Zhou M, Baudry M
J Neurosci. 2009
PubMed ID: 19339617
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{beta}-Arrestin-2 Mediates Anti-apoptotic Signaling through Regulation of BAD Phosphorylation.
Ahn S, Kim J, Hara MR, Ren XR, Lefkowitz RJ
J Biol Chem. 2009
PubMed ID: 19171933
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c-Src regulates Akt signaling in response to ghrelin via beta-arrestin signaling-independent and -dependent mechanisms.
Lodeiro M, Theodoropoulou M, Pardo M, Casanueva FF, Camiña JP
PLoS One. 2009
PubMed ID: 19262695
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beta-Arrestin1 interacts with the G-protein subunits beta1gamma2 and promotes beta1gamma2-dependent Akt signalling for NF-kappaB activation.
Yang M, He RL, Benovic JL, Ye RD
Biochem J. 2009
PubMed ID: 18729826
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Roles of G protein and beta-arrestin in dopamine D2 receptor-mediated ERK activation.
Quan W, Kim JH, Albert PR, Choi H, Kim KM
Biochem Biophys Res Commun. 2008
PubMed ID: 18940181
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Solid tumor proteome and phosphoproteome analysis by high resolution mass spectrometry.
Zanivan S, Gnad F, Wickström SA, Geiger T, Macek B, Cox J, Fässler R, Mann M
J Proteome Res. 2008
PubMed ID: 19367708
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Beta-arrestin and casein kinase 1/2 define distinct branches of non-canonical WNT signalling pathways.
Bryja V, Schambony A, Cajánek L, Dominguez I, Arenas E, Schulte G
EMBO Rep. 2008
PubMed ID: 18953287
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Agonist-selective, receptor-specific interaction of human P2Y receptors with beta-arrestin-1 and -2.
Hoffmann C, Ziegler N, Reiner S, Krasel C, Lohse MJ
J Biol Chem. 2008
PubMed ID: 18703513
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Physical interaction of calmodulin with the 5-hydroxytryptamine2C receptor C-terminus is essential for G protein-independent, arrestin-dependent receptor signaling.
Labasque M, Reiter E, Becamel C, Bockaert J, Marin P
Mol Biol Cell. 2008
PubMed ID: 18768750
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A novel protein kinase A-independent, beta-arrestin-1-dependent signaling pathway for p38 mitogen-activated protein kinase activation by beta2-adrenergic receptors.
Gong K, Li Z, Xu M, Du J, Lv Z, Zhang Y
J Biol Chem. 2008
PubMed ID: 18678875
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Large-scale gene trapping in C57BL/6N mouse embryonic stem cells.
Hansen GM, Markesich DC, Burnett MB, Zhu Q, Dionne KM, Richter LJ, Finnell RH, Sands AT, Zambrowicz BP, Abuin A
Genome Res. 2008
PubMed ID: 18799693
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Nuclear beta-arrestin1 functions as a scaffold for the dephosphorylation of STAT1 and moderates the antiviral activity of IFN-gamma.
Mo W, Zhang L, Yang G, Zhai J, Hu Z, Chen Y, Chen X, Hui L, Huang R, Hu G
Mol Cell. 2008
PubMed ID: 18775329
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Different internalization properties of the alpha1a- and alpha1b-adrenergic receptor subtypes: the potential role of receptor interaction with beta-arrestins and AP50.
Stanasila L, Abuin L, Dey J, Cotecchia S
Mol Pharmacol. 2008
PubMed ID: 18523139
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Mouse cones require an arrestin for normal inactivation of phototransduction.
Nikonov SS, Brown BM, Davis JA, Zuniga FI, Bragin A, Pugh EN, Craft CM
Neuron. 2008
PubMed ID: 18701071
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Nedd4 mediates agonist-dependent ubiquitination, lysosomal targeting, and degradation of the beta2-adrenergic receptor.
Shenoy SK, Xiao K, Venkataramanan V, Snyder PM, Freedman NJ, Weissman AM
J Biol Chem. 2008
PubMed ID: 18544533
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Site-specific cleavage of G protein-coupled receptor-engaged beta-arrestin. Influence of the AT1 receptor conformation on scissile site selection.
Lee C, Bhatt S, Shukla A, Desnoyer RW, Yadav SP, Kim M, Jang SH, Karnik SS
J Biol Chem. 2008
PubMed ID: 18505723
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Beta-arrestin scaffolding of phosphatidylinositol 4-phosphate 5-kinase Ialpha promotes agonist-stimulated sequestration of the beta2-adrenergic receptor.
Nelson CD, Kovacs JJ, Nobles KN, Whalen EJ, Lefkowitz RJ
J Biol Chem. 2008
PubMed ID: 18534983
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Beta-arrestins regulate atherosclerosis and neointimal hyperplasia by controlling smooth muscle cell proliferation and migration.
Kim J, Zhang L, Peppel K, Wu JH, Zidar DA, Brian L, DeWire SM, Exum ST, Lefkowitz RJ, Freedman NJ
Circ Res. 2008
PubMed ID: 18519945
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Post-endocytic fates of delta-opioid receptor are regulated by GRK2-mediated receptor phosphorylation and distinct beta-arrestin isoforms.
Zhang X, Wang F, Chen X, Chen Y, Ma L
J Neurochem. 2008
PubMed ID: 18419762
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Beta-arrestins specifically constrain beta2-adrenergic receptor signaling and function in airway smooth muscle.
Deshpande DA, Theriot BS, Penn RB, Walker JK
FASEB J. 2008
PubMed ID: 18337459
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Beta-arrestin-mediated localization of smoothened to the primary cilium.
Kovacs JJ, Whalen EJ, Liu R, Xiao K, Kim J, Chen M, Wang J, Chen W, Lefkowitz RJ
Science. 2008
PubMed ID: 18497258
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Quantal noise from human red cone pigment.
Fu Y, Kefalov V, Luo DG, Xue T, Yau KW
Nat Neurosci. 2008
PubMed ID: 18425122
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Beta-arrestin-mediated signaling regulates protein synthesis.
DeWire SM, Kim J, Whalen EJ, Ahn S, Chen M, Lefkowitz RJ
J Biol Chem. 2008
PubMed ID: 18276584
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GUDMAP: the genitourinary developmental molecular anatomy project.
McMahon AP, Aronow BJ, Davidson DR, Davies JA, Gaido KW, Grimmond S, Lessard JL, Little MH, Potter SS, Wilder EL, Zhang P, GUDMAP project
J Am Soc Nephrol. 2008
PubMed ID: 18287559
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Beta-arrestins 1 and 2 are associated with nicotine dependence in European American smokers.
Sun D, Ma JZ, Payne TJ, Li MD
Mol Psychiatry. 2008
PubMed ID: 17579607
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Beta-arrestins: multifunctional cellular mediators.
Barki-Harrington L, Rockman HA
Physiology (Bethesda). 2008
PubMed ID: 18268361
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Rapid xenograft tumor progression in beta-arrestin1 transgenic mice due to enhanced tumor angiogenesis.
Zou L, Yang R, Chai J, Pei G
FASEB J. 2008
PubMed ID: 17890288
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Role of beta-arrestin-mediated desensitization and signaling in the control of angiotensin AT1a receptor-stimulated transcription.
Lee MH, El-Shewy HM, Luttrell DK, Luttrell LM
J Biol Chem. 2008
PubMed ID: 18006496
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Arrestin-2 interacts with the ubiquitin-protein isopeptide ligase atrophin-interacting protein 4 and mediates endosomal sorting of the chemokine receptor CXCR4.
Bhandari D, Trejo J, Benovic JL, Marchese A
J Biol Chem. 2007
PubMed ID: 17947233
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A novel form of transducin-dependent retinal degeneration: accelerated retinal degeneration in the absence of rod transducin.
Brill E, Malanson KM, Radu RA, Boukharov NV, Wang Z, Chung HY, Lloyd MB, Bok D, Travis GH, Obin M, Lem J
Invest Ophthalmol Vis Sci. 2007
PubMed ID: 18055791
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1H NMR structural and functional characterisation of a cAMP-specific phosphodiesterase-4D5 (PDE4D5) N-terminal region peptide that disrupts PDE4D5 interaction with the signalling scaffold proteins, beta-arrestin and RACK1.
Smith KJ, Baillie GS, Hyde EI, Li X, Houslay TM, McCahill A, Dunlop AJ, Bolger GB, Klussmann E, Adams DR, Houslay MD
Cell Signal. 2007
PubMed ID: 17900862
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Differential regulation of class IA phosphoinositide 3-kinase catalytic subunits p110 alpha and beta by protease-activated receptor 2 and beta-arrestins.
Wang P, Kumar P, Wang C, Defea KA
Biochem J. 2007
PubMed ID: 17680774
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Quantitative time-resolved phosphoproteomic analysis of mast cell signaling.
Cao L, Yu K, Banh C, Nguyen V, Ritz A, Raphael BJ, Kawakami Y, Kawakami T, Salomon AR
J Immunol. 2007
PubMed ID: 17947660
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Ubiquitination of beta-arrestin links seven-transmembrane receptor endocytosis and ERK activation.
Shenoy SK, Barak LS, Xiao K, Ahn S, Berthouze M, Shukla AK, Luttrell LM, Lefkowitz RJ
J Biol Chem. 2007
PubMed ID: 17666399
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Tumor necrosis factor receptor-1 can function through a G alpha q/11-beta-arrestin-1 signaling complex.
Kawamata Y, Imamura T, Babendure JL, Lu JC, Yoshizaki T, Olefsky JM
J Biol Chem. 2007
PubMed ID: 17664271
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Signaling properties of a short-wave cone visual pigment and its role in phototransduction.
Shi G, Yau KW, Chen J, Kefalov VJ
J Neurosci. 2007
PubMed ID: 17881515
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The role of beta-arrestins in the formyl peptide receptor-like 1 internalization and signaling.
Huet E, Boulay F, Barral S, Rabiet MJ
Cell Signal. 2007
PubMed ID: 17594911
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The calcium-sensing receptor changes cell shape via a beta-arrestin-1 ARNO ARF6 ELMO protein network.
Bouschet T, Martin S, Kanamarlapudi V, Mundell S, Henley JM
J Cell Sci. 2007
PubMed ID: 17623778
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Critical regulation of CD4+ T cell survival and autoimmunity by beta-arrestin 1.
Shi Y, Feng Y, Kang J, Liu C, Li Z, Li D, Cao W, Qiu J, Guo Z, Bi E, Zang L, Lu C, Zhang JZ, Pei G
Nat Immunol. 2007
PubMed ID: 17618287
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Beta-arrestin-dependent parathyroid hormone-stimulated extracellular signal-regulated kinase activation and parathyroid hormone type 1 receptor internalization.
Sneddon WB, Friedman PA
Endocrinology. 2007
PubMed ID: 17525124
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The active conformation of beta-arrestin1: direct evidence for the phosphate sensor in the N-domain and conformational differences in the active states of beta-arrestins1 and -2.
Nobles KN, Guan Z, Xiao K, Oas TG, Lefkowitz RJ
J Biol Chem. 2007
PubMed ID: 17513300
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Functional specialization of beta-arrestin interactions revealed by proteomic analysis.
Xiao K, McClatchy DB, Shukla AK, Zhao Y, Chen M, Shenoy SK, Yates JR, Lefkowitz RJ
Proc Natl Acad Sci U S A. 2007
PubMed ID: 17620599
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Beta-arrestin-dependent regulation of the cofilin pathway downstream of protease-activated receptor-2.
Zoudilova M, Kumar P, Ge L, Wang P, Bokoch GM, DeFea KA
J Biol Chem. 2007
PubMed ID: 17500066
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Differential effects of beta-arrestins on the internalization, desensitization and ERK1/2 activation downstream of protease activated receptor-2.
Kumar P, Lau CS, Mathur M, Wang P, DeFea KA
Am J Physiol Cell Physiol. 2007
PubMed ID: 17442737
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Enolase and arrestin are novel nonmyelin autoantigens in multiple sclerosis.
Forooghian F, Cheung RK, Smith WC, O'Connor P, Dosch HM
J Clin Immunol. 2007
PubMed ID: 17436063
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N-terminal tyrosine modulation of the endocytic adaptor function of the beta-arrestins.
Marion S, Fralish GB, Laporte S, Caron MG, Barak LS
J Biol Chem. 2007
PubMed ID: 17456469
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5-hydroxytryptamine 4 receptor activation of the extracellular signal-regulated kinase pathway depends on Src activation but not on G protein or beta-arrestin signaling.
Barthet G, Framery B, Gaven F, Pellissier L, Reiter E, Claeysen S, Bockaert J, Dumuis A
Mol Biol Cell. 2007
PubMed ID: 17377064
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Src-dependent phosphorylation of beta2-adaptin dissociates the beta-arrestin-AP-2 complex.
Fessart D, Simaan M, Zimmerman B, Comeau J, Hamdan FF, Wiseman PW, Bouvier M, Laporte SA
J Cell Sci. 2007
PubMed ID: 17456551
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Functional comparisons of visual arrestins in rod photoreceptors of transgenic mice.
Chan S, Rubin WW, Mendez A, Liu X, Song X, Hanson SM, Craft CM, Gurevich VV, Burns ME, Chen J
Invest Ophthalmol Vis Sci. 2007
PubMed ID: 17460248
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Beta-arrestins 1 and 2 differentially regulate LPS-induced signaling and pro-inflammatory gene expression.
Fan H, Luttrell LM, Tempel GE, Senn JJ, Halushka PV, Cook JA
Mol Immunol. 2007
PubMed ID: 17418896
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Beta-arrestin is a necessary component of Wnt/beta-catenin signaling in vitro and in vivo.
Bryja V, Gradl D, Schambony A, Arenas E, Schulte G
Proc Natl Acad Sci U S A. 2007
PubMed ID: 17426148
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Molecular properties of rhodopsin and rod function.
Imai H, Kefalov V, Sakurai K, Chisaka O, Ueda Y, Onishi A, Morizumi T, Fu Y, Ichikawa K, Nakatani K, Honda Y, Chen J, Yau KW, Shichida Y
J Biol Chem. 2007
PubMed ID: 17194706
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hORFeome v3.1: a resource of human open reading frames representing over 10,000 human genes.
Lamesch P, Li N, Milstein S, Fan C, Hao T, Szabo G, Hu Z, Venkatesan K, Bethel G, Martin P, Rogers J, Lawlor S, McLaren S, Dricot A, Borick H, Cusick ME, Vandenhaute J, Dunham I, Hill DE, Vidal M
Genomics. 2007
PubMed ID: 17207965
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Each rhodopsin molecule binds its own arrestin.
Hanson SM, Gurevich EV, Vishnivetskiy SA, Ahmed MR, Song X, Gurevich VV
Proc Natl Acad Sci U S A. 2007
PubMed ID: 17360618
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Targeting of diacylglycerol degradation to M1 muscarinic receptors by beta-arrestins.
Nelson CD, Perry SJ, Regier DS, Prescott SM, Topham MK, Lefkowitz RJ
Science. 2007
PubMed ID: 17272726
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Large-scale mapping of human protein-protein interactions by mass spectrometry.
Ewing RM, Chu P, Elisma F, Li H, Taylor P, Climie S, McBroom-Cerajewski L, Robinson MD, O'Connor L, Li M, Taylor R, Dharsee M, Ho Y, Heilbut A, Moore L, Zhang S, Ornatsky O, Bukhman YV, Ethier M, Sheng Y, Vasilescu J, Abu-Farha M, Lambert JP, Duewel HS, Stewart II, Kuehl B, Hogue K, Colwill K, Gladwish K, Muskat B, Kinach R, Adams SL, Moran MF, Morin GB, Topaloglou T, Figeys D
Mol Syst Biol. 2007
PubMed ID: 17353931
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G protein-coupled receptor kinase and beta-arrestin-mediated desensitization of the angiotensin II type 1A receptor elucidated by diacylglycerol dynamics.
Violin JD, Dewire SM, Barnes WG, Lefkowitz RJ
J Biol Chem. 2006
PubMed ID: 17008309
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Stable rhodopsin/arrestin complex leads to retinal degeneration in a transgenic mouse model of autosomal dominant retinitis pigmentosa.
Chen J, Shi G, Concepcion FA, Xie G, Oprian D, Chen J
J Neurosci. 2006
PubMed ID: 17108167
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Opposing effects of beta-arrestin1 and beta-arrestin2 on activation and degradation of Src induced by protease-activated receptor 1.
Kuo FT, Lu TL, Fu HW
Cell Signal. 2006
PubMed ID: 16580177
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Beta-arrestin2-mediated inotropic effects of the angiotensin II type 1A receptor in isolated cardiac myocytes.
Rajagopal K, Whalen EJ, Violin JD, Stiber JA, Rosenberg PB, Premont RT, Coffman TM, Rockman HA, Lefkowitz RJ
Proc Natl Acad Sci U S A. 2006
PubMed ID: 17060617
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Role of the AP2 beta-appendage hub in recruiting partners for clathrin-coated vesicle assembly.
Schmid EM, Ford MG, Burtey A, Praefcke GJ, Peak-Chew SY, Mills IG, Benmerah A, McMahon HT
PLoS Biol. 2006
PubMed ID: 16903783
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Corticotropin releasing factor (CRF) receptor signaling in the central nervous system: new molecular targets.
Hauger RL, Risbrough V, Brauns O, Dautzenberg FM
CNS Neurol Disord Drug Targets. 2006
PubMed ID: 16918397
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G protein-coupled receptor kinase 2 and beta-arrestins are recruited to FSH receptor in stimulated rat primary Sertoli cells.
Marion S, Kara E, Crepieux P, Piketty V, Martinat N, Guillou F, Reiter E
J Endocrinol. 2006
PubMed ID: 16899567
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Constitutive ERK1/2 activation by a chimeric neurokinin 1 receptor-beta-arrestin1 fusion protein. Probing the composition and function of the G protein-coupled receptor "signalsome".
Jafri F, El-Shewy HM, Lee MH, Kelly M, Luttrell DK, Luttrell LM
J Biol Chem. 2006
PubMed ID: 16670094
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Platelet-activating factor-induced clathrin-mediated endocytosis requires beta-arrestin-1 recruitment and activation of the p38 MAPK signalosome at the plasma membrane for actin bundle formation.
McLaughlin NJ, Banerjee A, Kelher MR, Gamboni-Robertson F, Hamiel C, Sheppard FR, Moore EE, Silliman CC
J Immunol. 2006
PubMed ID: 16709866
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Quantitative phosphoproteomics of vasopressin-sensitive renal cells: regulation of aquaporin-2 phosphorylation at two sites.
Hoffert JD, Pisitkun T, Wang G, Shen RF, Knepper MA
Proc Natl Acad Sci U S A. 2006
PubMed ID: 16641100
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Cooperative regulation of extracellular signal-regulated kinase activation and cell shape change by filamin A and beta-arrestins.
Scott MG, Pierotti V, Storez H, Lindberg E, Thuret A, Muntaner O, Labbé-Jullié C, Pitcher JA, Marullo S
Mol Cell Biol. 2006
PubMed ID: 16611986
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Distinct beta-arrestin- and G protein-dependent pathways for parathyroid hormone receptor-stimulated ERK1/2 activation.
Gesty-Palmer D, Chen M, Reiter E, Ahn S, Nelson CD, Wang S, Eckhardt AE, Cowan CL, Spurney RF, Luttrell LM, Lefkowitz RJ
J Biol Chem. 2006
PubMed ID: 16492667
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The melanosomal/lysosomal protein OA1 has properties of a G protein-coupled receptor.
Innamorati G, Piccirillo R, Bagnato P, Palmisano I, Schiaffino MV
Pigment Cell Res. 2006
PubMed ID: 16524428
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Human chromosome 11 DNA sequence and analysis including novel gene identification.
Taylor TD, Noguchi H, Totoki Y, Toyoda A, Kuroki Y, Dewar K, Lloyd C, Itoh T, Takeda T, Kim DW, She X, Barlow KF, Bloom T, Bruford E, Chang JL, Cuomo CA, Eichler E, FitzGerald MG, Jaffe DB, LaButti K, Nicol R, Park HS, Seaman C, Sougnez C, Yang X, Zimmer AR, Zody MC, Birren BW, Nusbaum C, Fujiyama A, Hattori M, Rogers J, Lander ES, Sakaki Y
Nature. 2006
PubMed ID: 16554811
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Role of the G protein-coupled receptor kinase site serine cluster in beta2-adrenergic receptor internalization, desensitization, and beta-arrestin translocation.
Vaughan DJ, Millman EE, Godines V, Friedman J, Tran TM, Dai W, Knoll BJ, Clark RB, Moore RH
J Biol Chem. 2006
PubMed ID: 16407241
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Molecular switches involving the AP-2 beta2 appendage regulate endocytic cargo selection and clathrin coat assembly.
Edeling MA, Mishra SK, Keyel PA, Steinhauser AL, Collins BM, Roth R, Heuser JE, Owen DJ, Traub LM
Dev Cell. 2006
PubMed ID: 16516836
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A beta-arrestin binding determinant common to the second intracellular loops of rhodopsin family G protein-coupled receptors.
Marion S, Oakley RH, Kim KM, Caron MG, Barak LS
J Biol Chem. 2006
PubMed ID: 16319069
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Association of beta-arrestin and TRAF6 negatively regulates Toll-like receptor-interleukin 1 receptor signaling.
Wang Y, Tang Y, Teng L, Wu Y, Zhao X, Pei G
Nat Immunol. 2006
PubMed ID: 16378096
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Role of beta-arrestin 1 in the metastatic progression of colorectal cancer.
Buchanan FG, Gorden DL, Matta P, Shi Q, Matrisian LM, DuBois RN
Proc Natl Acad Sci U S A. 2006
PubMed ID: 16432186
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Arrestin translocation is induced at a critical threshold of visual signaling and is superstoichiometric to bleached rhodopsin.
Strissel KJ, Sokolov M, Trieu LH, Arshavsky VY
J Neurosci. 2006
PubMed ID: 16436601
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Deactivation of phosphorylated and nonphosphorylated rhodopsin by arrestin splice variants.
Burns ME, Mendez A, Chen CK, Almuete A, Quillinan N, Simon MI, Baylor DA, Chen J
J Neurosci. 2006
PubMed ID: 16421323
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beta-arrestin-dependent, G protein-independent ERK1/2 activation by the beta2 adrenergic receptor.
Shenoy SK, Drake MT, Nelson CD, Houtz DA, Xiao K, Madabushi S, Reiter E, Premont RT, Lichtarge O, Lefkowitz RJ
J Biol Chem. 2006
PubMed ID: 16280323
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Diversification of transcriptional modulation: large-scale identification and characterization of putative alternative promoters of human genes.
Kimura K, Wakamatsu A, Suzuki Y, Ota T, Nishikawa T, Yamashita R, Yamamoto J, Sekine M, Tsuritani K, Wakaguri H, Ishii S, Sugiyama T, Saito K, Isono Y, Irie R, Kushida N, Yoneyama T, Otsuka R, Kanda K, Yokoi T, Kondo H, Wagatsuma M, Murakawa K, Ishida S, Ishibashi T, Takahashi-Fujii A, Tanase T, Nagai K, Kikuchi H, Nakai K, Isogai T, Sugano S
Genome Res. 2006
PubMed ID: 16344560
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Light causes phosphorylation of nonactivated visual pigments in intact mouse rod photoreceptor cells.
Shi GW, Chen J, Concepcion F, Motamedchaboki K, Marjoram P, Langen R, Chen J
J Biol Chem. 2005
PubMed ID: 16219764
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A nuclear function of beta-arrestin1 in GPCR signaling: regulation of histone acetylation and gene transcription.
Kang J, Shi Y, Xiang B, Qu B, Su W, Zhu M, Zhang M, Bao G, Wang F, Zhang X, Yang R, Fan F, Chen X, Pei G, Ma L
Cell. 2005
PubMed ID: 16325578
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beta-Arrestin 1 participates in platelet-activating factor receptor-mediated endocytosis of Streptococcus pneumoniae.
Radin JN, Orihuela CJ, Murti G, Guglielmo C, Murray PJ, Tuomanen EI
Infect Immun. 2005
PubMed ID: 16299272
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Angiotensin II-stimulated signaling through G proteins and beta-arrestin.
Shenoy SK, Lefkowitz RJ
Sci STKE. 2005
PubMed ID: 16304060
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Beta-arrestin mediates desensitization and internalization but does not affect dephosphorylation of the thyrotropin-releasing hormone receptor.
Jones BW, Hinkle PM
J Biol Chem. 2005
PubMed ID: 16183993
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A requirement for membrane cholesterol in the beta-arrestin- and clathrin-dependent endocytosis of LPA1 lysophosphatidic acid receptors.
Urs NM, Jones KT, Salo PD, Severin JE, Trejo J, Radhakrishna H
J Cell Sci. 2005
PubMed ID: 16263766
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G protein-coupled receptor kinases promote phosphorylation and beta-arrestin-mediated internalization of CCR5 homo- and hetero-oligomers.
Hüttenrauch F, Pollok-Kopp B, Oppermann M
J Biol Chem. 2005
PubMed ID: 16144840
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Towards a proteome-scale map of the human protein-protein interaction network.
Rual JF, Venkatesan K, Hao T, Hirozane-Kishikawa T, Dricot A, Li N, Berriz GF, Gibbons FD, Dreze M, Ayivi-Guedehoussou N, Klitgord N, Simon C, Boxem M, Milstein S, Rosenberg J, Goldberg DS, Zhang LV, Wong SL, Franklin G, Li S, Albala JS, Lim J, Fraughton C, Llamosas E, Cevik S, Bex C, Lamesch P, Sikorski RS, Vandenhaute J, Zoghbi HY, Smolyar A, Bosak S, Sequerra R, Doucette-Stamm L, Cusick ME, Hill DE, Roth FP, Vidal M
Nature. 2005
PubMed ID: 16189514
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Beta-arrestin1 and beta-arrestin2 are differentially required for phosphorylation-dependent and -independent internalization of delta-opioid receptors.
Zhang X, Wang F, Chen X, Li J, Xiang B, Zhang YQ, Li BM, Ma L
J Neurochem. 2005
PubMed ID: 16181421
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Antisense transcription in the mammalian transcriptome.
Katayama S, Tomaru Y, Kasukawa T, Waki K, Nakanishi M, Nakamura M, Nishida H, Yap CC, Suzuki M, Kawai J, Suzuki H, Carninci P, Hayashizaki Y, Wells C, Frith M, Ravasi T, Pang KC, Hallinan J, Mattick J, Hume DA, Lipovich L, Batalov S, Engström PG, Mizuno Y, Faghihi MA, Sandelin A, Chalk AM, Mottagui-Tabar S, Liang Z, Lenhard B, Wahlestedt C, RIKEN Genome Exploration Research Group, Genome Science Group (Genome Network Project Core Group), FANTOM Consortium
Science. 2005
PubMed ID: 16141073
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The transcriptional landscape of the mammalian genome.
Carninci P, Kasukawa T, Katayama S, Gough J, Frith MC, Maeda N, Oyama R, Ravasi T, Lenhard B, Wells C, Kodzius R, Shimokawa K, Bajic VB, Brenner SE, Batalov S, Forrest AR, Zavolan M, Davis MJ, Wilming LG, Aidinis V, Allen JE, Ambesi-Impiombato A, Apweiler R, Aturaliya RN, Bailey TL, Bansal M, Baxter L, Beisel KW, Bersano T, Bono H, Chalk AM, Chiu KP, Choudhary V, Christoffels A, Clutterbuck DR, Crowe ML, Dalla E, Dalrymple BP, de Bono B, Della Gatta G, di Bernardo D, Down T, Engstrom P, Fagiolini M, Faulkner G, Fletcher CF, Fukushima T, Furuno M, Futaki S, Gariboldi M, Georgii-Hemming P, Gingeras TR, Gojobori T, Green RE, Gustincich S, Harbers M, Hayashi Y, Hensch TK, Hirokawa N, Hill D, Huminiecki L, Iacono M, Ikeo K, Iwama A, Ishikawa T, Jakt M, Kanapin A, Katoh M, Kawasawa Y, Kelso J, Kitamura H, Kitano H, Kollias G, Krishnan SP, Kruger A, Kummerfeld SK, Kurochkin IV, Lareau LF, Lazarevic D, Lipovich L, Liu J, Liuni S, McWilliam S, Madan Babu M, Madera M, Marchionni L, Matsuda H, Matsuzawa S, Miki H, Mignone F, Miyake S, Morris K, Mottagui-Tabar S, Mulder N, Nakano N, Nakauchi H, Ng P, Nilsson R, Nishiguchi S, Nishikawa S, Nori F, Ohara O, Okazaki Y, Orlando V, Pang KC, Pavan WJ, Pavesi G, Pesole G, Petrovsky N, Piazza S, Reed J, Reid JF, Ring BZ, Ringwald M, Rost B, Ruan Y, Salzberg SL, Sandelin A, Schneider C, Schönbach C, Sekiguchi K, Semple CA, Seno S, Sessa L, Sheng Y, Shibata Y, Shimada H, Shimada K, Silva D, Sinclair B, Sperling S, Stupka E, Sugiura K, Sultana R, Takenaka Y, Taki K, Tammoja K, Tan SL, Tang S, Taylor MS, Tegner J, Teichmann SA, Ueda HR, van Nimwegen E, Verardo R, Wei CL, Yagi K, Yamanishi H, Zabarovsky E, Zhu S, Zimmer A, Hide W, Bult C, Grimmond SM, Teasdale RD, Liu ET, Brusic V, Quackenbush J, Wahlestedt C, Mattick JS, Hume DA, Kai C, Sasaki D, Tomaru Y, Fukuda S, Kanamori-Katayama M, Suzuki M, Aoki J, Arakawa T, Iida J, Imamura K, Itoh M, Kato T, Kawaji H, Kawagashira N, Kawashima T, Kojima M, Kondo S, Konno H, Nakano K, Ninomiya N, Nishio T, Okada M, Plessy C, Shibata K, Shiraki T, Suzuki S, Tagami M, Waki K, Watahiki A, Okamura-Oho Y, Suzuki H, Kawai J, Hayashizaki Y, FANTOM Consortium, RIKEN Genome Exploration Research Group and Genome Science Group (Genome Network Project Core Group)
Science. 2005
PubMed ID: 16141072
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An Akt/beta-arrestin 2/PP2A signaling complex mediates dopaminergic neurotransmission and behavior.
Beaulieu JM, Sotnikova TD, Marion S, Lefkowitz RJ, Gainetdinov RR, Caron MG
Cell. 2005
PubMed ID: 16051150
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{beta}-Arrestin is crucial for ubiquitination and down-regulation of the insulin-like growth factor-1 receptor by acting as adaptor for the MDM2 E3 ligase.
Girnita L, Shenoy SK, Sehat B, Vasilcanu R, Girnita A, Lefkowitz RJ, Larsson O
J Biol Chem. 2005
PubMed ID: 15878855
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Functional dissection of an AP-2 beta2 appendage-binding sequence within the autosomal recessive hypercholesterolemia protein.
Mishra SK, Keyel PA, Edeling MA, Dupin AL, Owen DJ, Traub LM
J Biol Chem. 2005
PubMed ID: 15728179
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beta-Arrestin 1 and Galphaq/11 coordinately activate RhoA and stress fiber formation following receptor stimulation.
Barnes WG, Reiter E, Violin JD, Ren XR, Milligan G, Lefkowitz RJ
J Biol Chem. 2005
PubMed ID: 15611106
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beta-Arrestins bind and decrease cell-surface abundance of the Na+/H+ exchanger NHE5 isoform.
Szabó EZ, Numata M, Lukashova V, Iannuzzi P, Orlowski J
Proc Natl Acad Sci U S A. 2005
PubMed ID: 15699339
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Phosphorylation-independent beta-arrestin translocation and internalization of leukotriene B4 receptors.
Jala VR, Shao WH, Haribabu B
J Biol Chem. 2005
PubMed ID: 15561704
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Different G protein-coupled receptor kinases govern G protein and beta-arrestin-mediated signaling of V2 vasopressin receptor.
Ren XR, Reiter E, Ahn S, Kim J, Chen W, Lefkowitz RJ
Proc Natl Acad Sci U S A. 2005
PubMed ID: 15671180
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c-Src regulates clathrin adapter protein 2 interaction with beta-arrestin and the angiotensin II type 1 receptor during clathrin- mediated internalization.
Fessart D, Simaan M, Laporte SA
Mol Endocrinol. 2005
PubMed ID: 15498833
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Multiple independent functions of arrestins in the regulation of protease-activated receptor-2 signaling and trafficking.
Stalheim L, Ding Y, Gullapalli A, Paing MM, Wolfe BL, Morris DR, Trejo J
Mol Pharmacol. 2005
PubMed ID: 15475570
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Constitutive protease-activated receptor-2-mediated migration of MDA MB-231 breast cancer cells requires both beta-arrestin-1 and -2.
Ge L, Shenoy SK, Lefkowitz RJ, DeFea K
J Biol Chem. 2004
PubMed ID: 15489220
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Beta-arrestin-1 levels: reduced in leukocytes of patients with depression and elevated by antidepressants in rat brain.
Avissar S, Matuzany-Ruban A, Tzukert K, Schreiber G
Am J Psychiatry. 2004
PubMed ID: 15514408
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Platelet-activating factor-induced chemokine gene expression requires NF-kappaB activation and Ca2+/calcineurin signaling pathways. Inhibition by receptor phosphorylation and beta-arrestin recruitment.
Venkatesha RT, Ahamed J, Nuesch C, Zaidi AK, Ali H
J Biol Chem. 2004
PubMed ID: 15308653
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The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC).
Gerhard DS, Wagner L, Feingold EA, Shenmen CM, Grouse LH, Schuler G, Klein SL, Old S, Rasooly R, Good P, Guyer M, Peck AM, Derge JG, Lipman D, Collins FS, Jang W, Sherry S, Feolo M, Misquitta L, Lee E, Rotmistrovsky K, Greenhut SF, Schaefer CF, Buetow K, Bonner TI, Haussler D, Kent J, Kiekhaus M, Furey T, Brent M, Prange C, Schreiber K, Shapiro N, Bhat NK, Hopkins RF, Hsie F, Driscoll T, Soares MB, Casavant TL, Scheetz TE, Brown-stein MJ, Usdin TB, Toshiyuki S, Carninci P, Piao Y, Dudekula DB, Ko MS, Kawakami K, Suzuki Y, Sugano S, Gruber CE, Smith MR, Simmons B, Moore T, Waterman R, Johnson SL, Ruan Y, Wei CL, Mathavan S, Gunaratne PH, Wu J, Garcia AM, Hulyk SW, Fuh E, Yuan Y, Sneed A, Kowis C, Hodgson A, Muzny DM, McPherson J, Gibbs RA, Fahey J, Helton E, Ketteman M, Madan A, Rodrigues S, Sanchez A, Whiting M, Madari A, Young AC, Wetherby KD, Granite SJ, Kwong PN, Brinkley CP, Pearson RL, Bouffard GG, Blakesly RW, Green ED, Dickson MC, Rodriguez AC, Grimwood J, Schmutz J, Myers RM, Butterfield YS, Griffith M, Griffith OL, Krzywinski MI, Liao N, Morin R, Morrin R, Palmquist D, Petrescu AS, Skalska U, Smailus DE, Stott JM, Schnerch A, Schein JE, Jones SJ, Holt RA, Baross A, Marra MA, Clifton S, Makowski KA, Bosak S, Malek J, MGC Project Team
Genome Res. 2004
PubMed ID: 15489334
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beta-arrestin-1 competitively inhibits insulin-induced ubiquitination and degradation of insulin receptor substrate 1.
Usui I, Imamura T, Huang J, Satoh H, Shenoy SK, Lefkowitz RJ, Hupfeld CJ, Olefsky JM
Mol Cell Biol. 2004
PubMed ID: 15456867
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beta-Arrestin-dependent constitutive internalization of the human chemokine decoy receptor D6.
Galliera E, Jala VR, Trent JO, Bonecchi R, Signorelli P, Lefkowitz RJ, Mantovani A, Locati M, Haribabu B
J Biol Chem. 2004
PubMed ID: 15084596
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beta-Arrestin inhibits NF-kappaB activity by means of its interaction with the NF-kappaB inhibitor IkappaBalpha.
Witherow DS, Garrison TR, Miller WE, Lefkowitz RJ
Proc Natl Acad Sci U S A. 2004
PubMed ID: 15173580
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Identification of beta-arrestin2 as a G protein-coupled receptor-stimulated regulator of NF-kappaB pathways.
Gao H, Sun Y, Wu Y, Luan B, Wang Y, Qu B, Pei G
Mol Cell. 2004
PubMed ID: 15125834
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Identification of a Ser/Thr cluster in the C-terminal domain of the human prostaglandin receptor EP4 that is essential for agonist-induced beta-arrestin1 recruitment but differs from the apparent principal phosphorylation site.
Neuschäfer-Rube F, Hermosilla R, Rehwald M, Rönnstrand L, Schülein R, Wernstedt C, Püschel GP
Biochem J. 2004
PubMed ID: 14709160
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Genome sequence of the Brown Norway rat yields insights into mammalian evolution.
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The unique amino-terminal region of the PDE4D5 cAMP phosphodiesterase isoform confers preferential interaction with beta-arrestins.
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Multiple steps of phosphorylation of activated rhodopsin can account for the reproducibility of vertebrate rod single-photon responses.
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A beta-arrestin-dependent scaffold is associated with prolonged MAPK activation in pseudopodia during protease-activated receptor-2-induced chemotaxis.
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Role of G protein-coupled receptor kinase 4 and beta-arrestin 1 in agonist-stimulated metabotropic glutamate receptor 1 internalization and activation of mitogen-activated protein kinases.
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Subcellular localization of beta-arrestins is determined by their intact N domain and the nuclear export signal at the C terminus.
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Desensitization, internalization, and signaling functions of beta-arrestins demonstrated by RNA interference.
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Phosphorylation of key serine residues is required for internalization of the complement 5a (C5a) anaphylatoxin receptor via a beta-arrestin, dynamin, and clathrin-dependent pathway.
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Generation and initial analysis of more than 15,000 full-length human and mouse cDNA sequences.
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Analysis of the mouse transcriptome based on functional annotation of 60,770 full-length cDNAs.
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alpha-Thrombin induces rapid and sustained Akt phosphorylation by beta-arrestin1-dependent and -independent mechanisms, and only the sustained Akt phosphorylation is essential for G1 phase progression.
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Aspartic acid 564 in the third cytoplasmic loop of the luteinizing hormone/choriogonadotropin receptor is crucial for phosphorylation-independent interaction with arrestin2.
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beta-Arrestin/AP-2 interaction in G protein-coupled receptor internalization: identification of a beta-arrestin binging site in beta 2-adaptin.
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beta-Arrestin scaffolding of the ERK cascade enhances cytosolic ERK activity but inhibits ERK-mediated transcription following angiotensin AT1a receptor stimulation.
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Internalization determinants of the parathyroid hormone receptor differentially regulate beta-arrestin/receptor association.
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Functionally rodless mice: transgenic models for the investigation of cone function in retinal disease and therapy.
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Myocardial distribution and regulation of GRK and beta-arrestin isoforms in congestive heart failure in rats.
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Gene expression profiles of light-induced apoptosis in arrestin/rhodopsin kinase-deficient mouse retinas.
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Association of beta-Arrestin 1 with the type 1A angiotensin II receptor involves phosphorylation of the receptor carboxyl terminus and correlates with receptor internalization.
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Identification of a motif in the carboxyl terminus of beta -arrestin2 responsible for activation of JNK3.
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Temporal and spatial expression patterns of the CRX transcription factor and its downstream targets. Critical differences during human and mouse eye development.
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Direct binding of beta-arrestins to two distinct intracellular domains of the delta opioid receptor.
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beta-Arrestin 1 and 2 differentially regulate heptahelical receptor signaling and trafficking.
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Functional annotation of a full-length mouse cDNA collection.
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The proliferative and antiapoptotic effects of substance P are facilitated by formation of a beta -arrestin-dependent scaffolding complex.
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Regulation and intracellular trafficking pathways of the endothelin receptors.
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Mice lacking G-protein receptor kinase 1 have profoundly slowed recovery of cone-driven retinal responses.
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Monocyte chemoattractant protein-1-induced CCR2B receptor desensitization mediated by the G protein-coupled receptor kinase 2.
Aragay AM, Mellado M, Frade JM, Martin AM, Jimenez-Sainz MC, Martinez-A C, Mayor F
Proc Natl Acad Sci U S A. 1998
PubMed ID: 9501202
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Clathrin-mediated endocytosis of the beta-adrenergic receptor is regulated by phosphorylation/dephosphorylation of beta-arrestin1.
Lin FT, Krueger KM, Kendall HE, Daaka Y, Fredericks ZL, Pitcher JA, Lefkowitz RJ
J Biol Chem. 1997
PubMed ID: 9388255
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beta-Arrestin1 knockout mice appear normal but demonstrate altered cardiac responses to beta-adrenergic stimulation.
Conner DA, Mathier MA, Mortensen RM, Christe M, Vatner SF, Seidman CE, Seidman JG
Circ Res. 1997
PubMed ID: 9400383
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Prolonged photoresponses in transgenic mouse rods lacking arrestin.
Xu J, Dodd RL, Makino CL, Simon MI, Baylor DA, Chen J
Nature. 1997
PubMed ID: 9333241
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Arrestin/clathrin interaction. Localization of the arrestin binding locus to the clathrin terminal domain.
Goodman OB, Krupnick JG, Gurevich VV, Benovic JL, Keen JH
J Biol Chem. 1997
PubMed ID: 9169477
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Partial structure, chromosome localization, and expression of the mouse Icln gene.
Wickman K, Seldin MF, James MR, Gendler SJ, Clapham DE
Genomics. 1997
PubMed ID: 9073507
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Uncoupling protein-2: a novel gene linked to obesity and hyperinsulinemia.
Fleury C, Neverova M, Collins S, Raimbault S, Champigny O, Levi-Meyrueis C, Bouillaud F, Seldin MF, Surwit RS, Ricquier D, Warden CH
Nat Genet. 1997
PubMed ID: 9054939
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Normalization and subtraction: two approaches to facilitate gene discovery.
Bonaldo MF, Lennon G, Soares MB
Genome Res. 1996
PubMed ID: 8889548
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GRK2 and beta-arrestin 1 as negative regulators of thyrotropin receptor-stimulated response.
Iacovelli L, Franchetti R, Masini M, De Blasi A
Mol Endocrinol. 1996
PubMed ID: 8885248
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Role of beta-arrestin in mediating agonist-promoted G protein-coupled receptor internalization.
Ferguson SS, Downey WE, Colapietro AM, Barak LS, Ménard L, Caron MG
Science. 1996
PubMed ID: 8553074
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Genetic mapping of the beta-arrestin 1 and 2 genes on mouse chromosomes 7 and 11 respectively.
Kingsmore SF, Peppel K, Suh D, Caron MG, Lefkowitz RJ, Seldin MF
Mamm Genome. 1995
PubMed ID: 7613043
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Assignment of the beta-arrestin 1 gene (ARRB1) to human chromosome 11q13.
Calabrese G, Sallese M, Stornaiuolo A, Morizio E, Palka G, De Blasi A
Genomics. 1994
PubMed ID: 7896272
-
Light-dependent regulation of the transcriptional activity of the mammalian gene for arrestin.
McGinnis JF, Austin BJ, Stepanik PL, Lerious V
J Neurosci Res. 1994
PubMed ID: 7932878
-
The proximal promoter of the mouse arrestin gene directs gene expression in photoreceptor cells and contains an evolutionarily conserved retinal factor-binding site.
Kikuchi T, Raju K, Breitman ML, Shinohara T
Mol Cell Biol. 1993
PubMed ID: 8321239
-
Molecular analysis of human beta-arrestin-1: cloning, tissue distribution, and regulation of expression. Identification of two isoforms generated by alternative splicing.
Parruti G, Peracchia F, Sallese M, Ambrosini G, Masini M, Rotilio D, De Blasi A
J Biol Chem. 1993
PubMed ID: 8486659
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A family of retinal S-antigens (arrestins) and their genes: comparative analysis of human, mouse, rat, bovine and Drosophila.
Shinohara T, Kikuchi T, Tsuda M, Yamaki K
Comp Biochem Physiol B. 1992
PubMed ID: 1458825
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Beta-arrestin2, a novel member of the arrestin/beta-arrestin gene family.
Attramadal H, Arriza JL, Aoki C, Dawson TM, Codina J, Kwatra MM, Snyder SH, Caron MG, Lefkowitz RJ
J Biol Chem. 1992
PubMed ID: 1517224
-
beta-Arrestin: a protein that regulates beta-adrenergic receptor function.
Lohse MJ, Benovic JL, Codina J, Caron MG, Lefkowitz RJ
Science. 1990
PubMed ID: 2163110
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