FOG04840
EOG8HX3NQ
sce:TAF14
Genes: 33
SGD DescriptionSubunit of TFIID, TFIIF, INO80, SWI/SNF, and NuA3 complexes; involved in RNA polymerase II transcription initiation and in chromatin modification; contains a YEATS domain
PomBase Descriptiontranscription factor TFIIF complex subunit Tfg3
AspGD DescriptionOrtholog(s) have DNA translocase activity, TBP-class protein binding, transcription factor activity, core RNA polymerase II binding activity
References
Henry NL, et al. (1992 Nov 15). Purification and characterization of yeast RNA polymerase II general initiation factor g.
Brigati C, et al. (1993 Feb). An essential yeast gene encoding a TTAGGG repeat-binding protein.
Henry NL, et al. (1994 Dec 1). TFIIF-TAF-RNA polymerase II connection.
Welch MD, et al. (1994 Jun). A nuclear protein with sequence similarity to proteins implicated in human acute leukemias is important for cellular morphogenesis and actin cytoskeletal function in Saccharomyces cerevisiae.
Hampsey M, et al. (1998 Jun). Molecular genetics of the RNA polymerase II general transcriptional machinery.
John S, et al. (2000 May 15). The something about silencing protein, Sas3, is the catalytic subunit of NuA3, a yTAF(II)30-containing HAT complex that interacts with the Spt16 subunit of the yeast CP (Cdc68/Pob3)-FACT complex.
Sanders SL, et al. (2000 May 5). Identification of two novel TAF subunits of the yeast Saccharomyces cerevisiae TFIID complex.
Sanders SL, et al. (2002 Aug). Molecular characterization of Saccharomyces cerevisiae TFIID.
Martinez E, et al. (2002 Dec). Multi-protein complexes in eukaryotic gene transcription.
Leurent C, et al. (2002 Jul 1). Mapping histone fold TAFs within yeast TFIID.
Martens JA, et al. (2003 Apr). Recent advances in understanding chromatin remodeling by Swi/Snf complexes.
Smith CL, et al. (2003 Feb). Structural analysis of the yeast SWI/SNF chromatin remodeling complex.
Shen X, et al. (2003 Jul). Involvement of actin-related proteins in ATP-dependent chromatin remodeling.
Taverna SD, et al. (2006 Dec 8). Yng1 PHD finger binding to H3 trimethylated at K4 promotes NuA3 HAT activity at K14 of H3 and transcription at a subset of targeted ORFs.
Hortschansky P, et al. (2007 Jul 11). Interaction of HapX with the CCAAT-binding complex--a novel mechanism of gene regulation by iron.
Starita LM, et al. (2012 Jan). Sites of ubiquitin attachment in Saccharomyces cerevisiae.
Shanle EK, et al. (2015 Sep 1). Association of Taf14 with acetylated histone H3 directs gene transcription and the DNA damage response.
Andrews FH, et al. (2016 Jun). The Taf14 YEATS domain is a reader of histone crotonylation.
FOG04841
EOG8HX3NQ
sce:SAS5
Genes: 4
SGD DescriptionSubunit of the SAS complex (Sas2p, Sas4p, Sas5p); acetylates free histones and nucleosomes and regulates transcriptional silencing; stimulates Sas2p HAT activity
References
Xu EY, et al. (1999 Sep). Identification of SAS4 and SAS5, two genes that regulate silencing in Saccharomyces cerevisiae.
Xu EY, et al. (1999 Sep). SAS4 and SAS5 are locus-specific regulators of silencing in Saccharomyces cerevisiae.
Meijsing SH, et al. (2001 Dec 1). The silencing complex SAS-I links histone acetylation to the assembly of repressed chromatin by CAF-I and Asf1 in Saccharomyces cerevisiae.
Osada S, et al. (2001 Dec 1). The yeast SAS (something about silencing) protein complex contains a MYST-type putative acetyltransferase and functions with chromatin assembly factor ASF1.
Sutton A, et al. (2003 May 9). Sas4 and Sas5 are required for the histone acetyltransferase activity of Sas2 in the SAS complex.
FOG04842
EOG8HX3NQ
sce:absent
Genes: 1