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TRANSFAC FACTOR TABLE, Release 2017.2 - public - 2017-06-30, (C) QIAGEN


AC T25678 XX ID T25678 XX DT 19.01.2006 (created); rad. DT 25.02.2014 (updated); spk. CO Copyright (C), QIAGEN. XX FA GCN5-L XX SY GCN5; GCN5 general control of amino-acid synthesis 5-like 2; GCN5 general control of amino-acid synthesis 5-like 2 (yeast); Gcn5l2. XX OS human, Homo sapiens OC eukaryota; animalia; metazoa; chordata; vertebrata; tetrapoda; mammalia; eutheria; primates XX GE G004682 KAT2A; HGNC: KAT2A. XX SZ 837 AA; 93.9 kDa (cDNA) (calc.). XX SQ MAEPSQAPTPAPAAQPRPLQSPAPAPTPTPAPSPASAPIPTPTPAPAPAPAAAPAGSTGT SQ GGPGVGSGGAGSGGDPARPGLSQQQRASQRKAQVRGLPRAKKLEKLGVFSACKANETCKC SQ NGWKNPKPPTAPRMDLQQPAANLSELCRSCEHPLADHVSHLENVSEDEINRLLGMVVDVE SQ NLFMSVHKEEDTDTKQVYFYLFKLLRKCILQMTRPVVEGSLGSPPFEKPNIEQGVLNFVQ SQ YKFSHLAPRERQTMFELSKMFLLCLNYWKLETPAQFRQRSQAEDVATYKVNYTRWLCYCH SQ VPQSCDSLPRYETTHVFGRSLLRSIFTVTRRQLLEKFRVEKDKLVPEKRTLILTHFPKFL SQ SMLEEEIYGANSPIWESGFTMPPSEGTQLVPRPASVSAAVVPSTPIFSPSMGGGSNSSLS SQ LDSAGAEPMPGEKRTLPENLTLEDAKRLRVMGDIPMELVNEVMLTITDPAAMLGPETSLL SQ SANAARDETARLEERRGIIEFHVIGNSLTPKANRRVLLWLVGLQNVFSHQLPRMPKEYIA SQ RLVFDPKHKTLALIKDGRVIGGICFRMFPTQGFTEIVFCAVTSNEQVKGYGTHLMNHLKE SQ YHIKHNILYFLTYADEYAIGYFKKQGFSKDIKVPKSRYLGYIKDYEGATLMECELNPRIP SQ YTELSHIIKKQKEIIKKLIERKQAQIRKVYPGLSCFKEGVRQIPVESVPGIRETGWKPLG SQ KEKGKELKDPDQLYTTLKNLLAQIKSHPSAWPFMEPVKKSEAPDYYEVIRFPIDLKTMTE SQ RLRSRYYVTRKLFVADLQRVIANCREYNPPDSEYCRCASALEKFFYFKLKEGGLIDK XX SC translated from EMBL:BC105977 XX FT 87 337 PF06466; PCAF (P300/CBP-associated factor) N-te. FT 377 692 PF00478; IMP dehydrogenase / GMP reductase doma. FT 551 628 PF00583; Acetyltransferase (GNAT) family. FT 726 834 SM00297; bromo_6. FT 733 820 PF00439; Bromodomain. FT 745 815 PS50014; BROMODOMAIN_2. XX IN T32366 SIRT1-isoform1; mouse, Mus musculus. XX DR TRANSPATH: MO000057783. DR EMBL: BC105977; BC105977. DR UniProtKB: Q92830-1; XX RN [1]; RE0048066. RX PUBMED: 12887892. RA Fulco M., Schiltz R. L., Iezzi S., King M. T., Zhao P., Kashiwaya Y., Hoffman E., Veech R. L., Sartorelli V. RT Sir2 regulates skeletal muscle differentiation as a potential sensor of the redox state. RL Mol. Cell 12:51-62 (2003). XX //