PSMA7
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(Human) GRCh37 - chr20:60711791..60718496 (6.71 kb) View in Genome Browser
(Mouse) NCBIM37 - chr2:179771078..179777138 (66 kb) View in Genome Browser
(Rat) RGSC3.4 - chr3:169100807..169107149 (6.34 kb) View in Genome Browser
HaemAtlas Expression Table for PSMA7:
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 |
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 PSMA7:The PSMA7 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 |
| PSMA7 | PSME3 | Reactome | predicted | |
| PSMA7 | PSMD14 | Reactome | predicted | |
| PSMA7 | EIF1B | IntAct | empirical | 17353931 |
| PSMA7 | CAPN10 | IntAct | empirical | 21988832 |
| PSMA7 | GABARAPL2 | IntAct | empirical | 17353931 |
| PSMA7 | PSMB11 | Reactome | predicted | |
| PSMA7 | PSMA8 | Reactome | predicted | |
| PSMA7 | EGFR | IntAct | empirical | 20029029 |
| PSMA7 | EPB41 | IntAct | empirical | 17353931 |
| PSMA7 | PSME4 | Reactome | predicted | |
| PSMA7 | HIF1A | HPRD, MINT | empirical | 11389899 |
| PSMA7 | HLA-B | IntAct | empirical | 17353931 |
| PSMA7 | KCNMA1 | IntAct | empirical | 19423573 |
| PSMA7 | MCC | IntAct | empirical | 17353931 |
| PSMA7 | MYC | IntAct | empirical | 17314511 |
| PSMA7 | NME2 | IntAct | empirical | 17353931 |
| PSMA7 | NR4A2 | Sanger Interaction Map | predicted | 15345047 |
| PSMA7 | PARK2 | HPRD, MINT | empirical | 15987638 |
| PSMA7 | POMP | MINT | empirical | 17948026 |
| PSMA7 | UCHL5 | IntAct | empirical | 19490896 18922472 |
| PSMA7 | PLK1 | HPRD | empirical | 11205743 |
| PSMA7 | PPP2R1A | IntAct | empirical | 16857963 |
| PSMA7 | PRKAB1 | IntAct | empirical | 17353931 |
| PSMA7 | PSMA1 | HPRD, MINT, IntAct, Reactome, Sanger Interaction Map | empirical | 15225636 14733938 17948026 12376572 16857966 15345047 |
| PSMA7 | PSMA2 | HPRD, MINT, IntAct, Reactome, Sanger Interaction Map | empirical | 15225636 17948026 15345047 |
| PSMA7 | PSMA3 | HPRD, MINT, IntAct, Reactome, Sanger Interaction Map | empirical | 15225636 21988832 16857966 15345047 |
| PSMA7 | PSMA4 | HPRD, MINT, IntAct, Reactome, Sanger Interaction Map | empirical | 15225636 14733938 17948026 15345047 |
| PSMA7 | PSMA5 | HPRD, MINT, IntAct, Reactome, Sanger Interaction Map | empirical | 15225636 15345047 |
| PSMA7 | PSMA6 | HPRD, MINT, IntAct, Reactome, Sanger Interaction Map | empirical | 15225636 14733938 17948026 15345047 |
| PSMA7 | PSMA7 | HPRD, MINT, IntAct | empirical | 15225636 17948026 |
| PSMA7 | PSMB1 | Reactome, Sanger Interaction Map | predicted | 15345047 |
| PSMA7 | PSMB2 | Reactome, Sanger Interaction Map | predicted | 15345047 |
| PSMA7 | PSMB3 | MINT, Reactome, Sanger Interaction Map | empirical | 17948026 15345047 |
| PSMA7 | PSMB4 | Reactome, Sanger Interaction Map | predicted | 15345047 |
| PSMA7 | PSMB5 | Reactome, Sanger Interaction Map | predicted | 15345047 |
| PSMA7 | PSMB6 | Reactome | predicted | |
| PSMA7 | PSMB7 | MINT, Reactome | empirical | 15987638 |
| PSMA7 | PSMB8 | Reactome | predicted | |
| PSMA7 | PSMB9 | Reactome | predicted | |
| PSMA7 | PSMB10 | Reactome | predicted | |
| PSMA7 | PSMC1 | HPRD, Reactome | empirical | 11361004 |
| PSMA7 | PSMC2 | Reactome | predicted | |
| PSMA7 | PSMC3 | Reactome | predicted | |
| PSMA7 | PSMC4 | Reactome | predicted | |
| PSMA7 | PSMC5 | Reactome | predicted | |
| PSMA7 | PSMC6 | Reactome, Sanger Interaction Map | predicted | 15345047 |
| PSMA7 | PSMD1 | Reactome | predicted | |
| PSMA7 | PSMD2 | Reactome | predicted | |
| PSMA7 | PSMD3 | Reactome | predicted | |
| PSMA7 | PSMD4 | MINT, Reactome | empirical | 16990800 |
| PSMA7 | PSMD5 | Reactome | predicted | |
| PSMA7 | PSMD7 | Reactome | predicted | |
| PSMA7 | PSMD8 | Reactome | predicted | |
| PSMA7 | PSMD9 | Reactome | predicted | |
| PSMA7 | PSMD10 | Reactome | predicted | |
| PSMA7 | PSMD11 | Reactome | predicted | |
| PSMA7 | PSMD12 | Reactome | predicted | |
| PSMA7 | PSMD13 | IntAct, Reactome | empirical | 17353931 |
| PSMA7 | PSME1 | Reactome | predicted | |
| PSMA7 | PSME2 | Reactome | predicted | |
| PSMA7 | KLHL8 | Sanger Interaction Map | predicted | 15345047 |
| PSMA7 | RAD23B | IntAct | empirical | 20178748 |
| PSMA7 | ACTR6 | IntAct | empirical | 17353931 |
| PSMA7 | SLC2A4 | IntAct | empirical | 16396496 |
| PSMA7 | TIMP2 | IntAct | empirical | 17353931 |
| PSMA7 | VCP | IntAct | empirical | 21988832 |
| PSMA7 | C5orf44 | Sanger Interaction Map | predicted | 15345047 |
| PSMA7 | RIPK2 | IntAct | empirical | 17353931 |
| PSMA7 | ATG5 | IntAct | empirical | 17353931 |
| PSMA7 | PSMF1 | IntAct, Reactome | empirical | 21988832 |
| PSMA7 | IKBKE | IntAct | empirical | 17353931 |
| PSMA7 | IQCB1 | IntAct | empirical | 21565611 |
| PSMA7 | PSMD6 | Reactome | predicted |
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Type 1 Diabetes Publications: 1
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Identification of transcripts with enriched expression in the developing and adult pancreas.
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Calcineurin B subunit interacts with proteasome subunit alpha type 7 and represses hypoxia-inducible factor-1α activity via the proteasome pathway.
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PubMed ID: 21256111
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Initial characterization of the human central proteome.
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BMC Syst Biol. 2011
PubMed ID: 21269460
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PAC1 gene knockout reveals an essential role of chaperone-mediated 20S proteasome biogenesis and latent 20S proteasomes in cellular homeostasis.
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Mol Cell Biol. 2010
PubMed ID: 20498273
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Monoubiquitination of RPN10 regulates substrate recruitment to the proteasome.
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Mol Cell. 2010
PubMed ID: 20542005
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Mdm2 facilitates the association of p53 with the proteasome.
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Proc Natl Acad Sci U S A. 2010
PubMed ID: 20479273
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The protein network surrounding the human telomere repeat binding factors TRF1, TRF2, and POT1.
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PLoS One. 2010
PubMed ID: 20811636
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Regulated endoplasmic reticulum-associated degradation of a polytopic protein: p97 recruits proteasomes to Insig-1 before extraction from membranes.
Ikeda Y, Demartino GN, Brown MS, Lee JN, Goldstein JL, Ye J
J Biol Chem. 2009
PubMed ID: 19815544
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Negative regulation of MAVS-mediated innate immune response by PSMA7.
Jia Y, Song T, Wei C, Ni C, Zheng Z, Xu Q, Ma H, Li L, Zhang Y, He X, Xu Y, Shi W, Zhong H
J Immunol. 2009
PubMed ID: 19734229
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Lysine acetylation targets protein complexes and co-regulates major cellular functions.
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Science. 2009
PubMed ID: 19608861
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Mammalian BTBD12/SLX4 assembles a Holliday junction resolvase and is required for DNA repair.
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Cell. 2009
PubMed ID: 19596235
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Endothelial monocyte activating polypeptide-II modulates endothelial cell responses by degrading hypoxia-inducible factor-1alpha through interaction with PSMA7, a component of the proteasome.
Tandle AT, Calvani M, Uranchimeg B, Zahavi D, Melillo G, Libutti SK
Exp Cell Res. 2009
PubMed ID: 19362550
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Regulation of epidermal growth factor receptor trafficking by lysine deacetylase HDAC6.
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Sci Signal. 2009
PubMed ID: 20029029
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PSMA7, a potential biomarker of diseases.
Du H, Huang X, Wang S, Wu Y, Xu W, Li M
Protein Pept Lett. 2009
PubMed ID: 19442227
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Large-scale gene trapping in C57BL/6N mouse embryonic stem cells.
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Genome Res. 2008
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Quantitative analysis of global ubiquitination in HeLa cells by mass spectrometry.
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J Proteome Res. 2008
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[High expression of proteasome subunit PSMA7 in colorectal cancer is significantly correlated with liver metastasis]
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Zhonghua Zhong Liu Za Zhi. 2008
PubMed ID: 19062718
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The proteasome subunit PSMA7 located on the 20q13 amplicon is overexpressed and associated with liver metastasis in colorectal cancer.
Hu XT, Chen W, Wang D, Shi QL, Zhang FB, Liao YQ, Jin M, He C
Oncol Rep. 2008
PubMed ID: 18202793
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Wnt signalling regulates paxillin ubiquitination essential for mesodermal cell motility.
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Nat Cell Biol. 2007
PubMed ID: 17558393
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Mass spectrometric characterization of the affinity-purified human 26S proteasome complex.
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Biochemistry. 2007
PubMed ID: 17323924
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A new method of purification of proteasome substrates reveals polyubiquitination of 20 S proteasome subunits.
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Large-scale identification of c-MYC-associated proteins using a combined TAP/MudPIT approach.
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Cell Cycle. 2007
PubMed ID: 17314511
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Large-scale mapping of human protein-protein interactions by mass spectrometry.
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Mol Syst Biol. 2007
PubMed ID: 17353931
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Interaction between c-Abl and Arg tyrosine kinases and proteasome subunit PSMA7 regulates proteasome degradation.
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Mol Cell. 2006
PubMed ID: 16678104
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Modification of Cul1 regulates its association with proteasomal subunits.
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Cell Div. 2006
PubMed ID: 16759355
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The up-regulation of proteasome subunits and lysosomal proteases in hepatocellular carcinomas of the HBx gene knockin transgenic mice.
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Proteomics. 2006
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Large-scale analysis of the human ubiquitin-related proteome.
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Proteomics. 2005
PubMed ID: 16196087
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A heterodimeric complex that promotes the assembly of mammalian 20S proteasomes.
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Nature. 2005
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Antisense transcription in the mammalian transcriptome.
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Science. 2005
PubMed ID: 16141073
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The transcriptional landscape of the mammalian genome.
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Science. 2005
PubMed ID: 16141072
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Parkin interacts with the proteasome subunit alpha4.
Dächsel JC, Lücking CB, Deeg S, Schultz E, Lalowski M, Casademunt E, Corti O, Hampe C, Patenge N, Vaupel K, Yamamoto A, Dichgans M, Brice A, Wanker EE, Kahle PJ, Gasser T
FEBS Lett. 2005
PubMed ID: 15987638
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Nucleolar proteome dynamics.
Andersen JS, Lam YW, Leung AK, Ong SE, Lyon CE, Lamond AI, Mann M
Nature. 2005
PubMed ID: 15635413
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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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Gene expression profiling of purified rat retinal ganglion cells.
Farkas RH, Qian J, Goldberg JL, Quigley HA, Zack DJ
Invest Ophthalmol Vis Sci. 2004
PubMed ID: 15277470
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The alpha4 and alpha7 subunits and assembly of the 20S proteasome.
Apcher GS, Maitland J, Dawson S, Sheppard P, Mayer RJ
FEBS Lett. 2004
PubMed ID: 15225636
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The proteasome alpha-subunit XAPC7 interacts specifically with Rab7 and late endosomes.
Dong J, Chen W, Welford A, Wandinger-Ness A
J Biol Chem. 2004
PubMed ID: 14998988
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Mammalian Cdh1/Fzr mediates its own degradation.
Listovsky T, Oren YS, Yudkovsky Y, Mahbubani HM, Weiss AM, Lebendiker M, Brandeis M
EMBO J. 2004
PubMed ID: 15029244
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Genome sequence of the Brown Norway rat yields insights into mammalian evolution.
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Nature. 2004
PubMed ID: 15057822
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Shultz MA, Zhang L, Gu YZ, Baker GL, Fannuchi MV, Padua AM, Gurske WA, Morin D, Penn SG, Jovanovich SB, Plopper CG, Buckpitt AR
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Protein-protein interactions among human 20S proteasome subunits and proteassemblin.
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Biochem Biophys Res Commun. 2004
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Genome Biol. 2004
PubMed ID: 14759258
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Complete sequencing and characterization of 21,243 full-length human cDNAs.
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Wnk1 kinase deficiency lowers blood pressure in mice: a gene-trap screen to identify potential targets for therapeutic intervention.
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Proc Natl Acad Sci U S A. 2003
PubMed ID: 14610273
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The Vif protein of HIV triggers degradation of the human antiretroviral DNA deaminase APOBEC3G.
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Curr Biol. 2003
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Induction of APOBEC3G ubiquitination and degradation by an HIV-1 Vif-Cul5-SCF complex.
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Science. 2003
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J Biol Chem. 2003
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J Virol. 2003
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HIV-1 Vif protein binds the editing enzyme APOBEC3G and induces its degradation.
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Nat Med. 2003
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The antiretroviral enzyme APOBEC3G is degraded by the proteasome in response to HIV-1 Vif.
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Nat Med. 2003
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Human immunodeficiency virus-1 Tat protein interacts with distinct proteasomal alpha and beta subunits.
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Mol Cell. 2003
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Cell. 2003
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Cell. 2003
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Nature. 2003
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Nature. 2003
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The cytidine deaminase CEM15 induces hypermutation in newly synthesized HIV-1 DNA.
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DNA deamination: not just a trigger for antibody diversification but also a mechanism for defense against retroviruses.
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Nat Immunol. 2003
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DNA deamination mediates innate immunity to retroviral infection.
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Cell. 2003
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Science. 2003
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Comprehensive investigation of the molecular defect in vif-deficient human immunodeficiency virus type 1 virions.
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J Virol. 2003
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Nucleic Acids Res. 2003
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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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Nature. 2002
PubMed ID: 12466851
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The RTP site shared by the HIV-1 Tat protein and the 11S regulator subunit alpha is crucial for their effects on proteasome function including antigen processing.
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Proteasome activity is required for androgen receptor transcriptional activity via regulation of androgen receptor nuclear translocation and interaction with coregulators in prostate cancer cells.
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Isolation of a human gene that inhibits HIV-1 infection and is suppressed by the viral Vif protein.
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Nature. 2002
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Mapping and structural dissection of human 20 S proteasome using proteomic approaches.
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Mol Cell Proteomics. 2002
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The DNA sequence and comparative analysis of human chromosome 20.
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Involvement of proteasome alpha-subunit PSMA7 in hepatitis C virus internal ribosome entry site-mediated translation.
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RIKEN integrated sequence analysis (RISA) system--384-format sequencing pipeline with 384 multicapillary sequencer.
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