FOG04246
EOG8S1RPT
EOG8ZW3S3
sce:absent
Genes: 5
FOG04247
EOG8S1RPT
sce:OAF1;PIP2
Genes: 5
SGD DescriptionOleate-activated transcription factor; subunit of a heterodimeric complex with Pip2p, which binds to oleate-response elements (ORE) in the promoter of genes involved in beta-oxidation of fatty acids, peroxisome organization and biogenesis, activating transcription in the presence of oleate; regulates chromatin silencing at telomeres; involved in diauxic shift; OAF1 has a paralog, PIP2, that arose from the whole genome duplication|Autoregulatory, oleate-activated transcription factor; subunit of a heterodimeric complex with Oaf1p, which binds to oleate-response elements (ORE) in the promoter of genes involved in beta-oxidation of fatty acids, peroxisome organization and biogenesis, activating transcription in the presence of oleate; PIP2 has a paralog, OAF1, that arose from the whole genome duplication
References
Rottensteiner H, et al. (1996 Jun 17). Pip2p: a transcriptional regulator of peroxisome proliferation in the yeast Saccharomyces cerevisiae.
Luo Y, et al. (1996 May 17). Purification, identification, and properties of a Saccharomyces cerevisiae oleate-activated upstream activating sequence-binding protein that is involved in the activation of POX1.
Rottensteiner H, et al. (1997 Aug 1). A heterodimer of the Zn2Cys6 transcription factors Pip2p and Oaf1p controls induction of genes encoding peroxisomal proteins in Saccharomyces cerevisiae.
Karpichev IV, et al. (1997 Jan). A complex containing two transcription factors regulates peroxisome proliferation and the coordinate induction of beta-oxidation enzymes in Saccharomyces cerevisiae.
Baumgartner U, et al. (1999 Aug 6). Functional analysis of the Zn(2)Cys(6) transcription factors Oaf1p and Pip2p. Different roles in fatty acid induction of beta-oxidation in Saccharomyces cerevisiae.
Rottensteiner H, et al. (2003 May). Saccharomyces cerevisiae Pip2p-Oaf1p regulates PEX25 transcription through an adenine-less ORE.
Kellis M, et al. (2003 May 15). Sequencing and comparison of yeast species to identify genes and regulatory elements.
Piskacek S, et al. (2007 Jun). Nine-amino-acid transactivation domain: establishment and prediction utilities.
Wendland J, et al. (2011 Dec). Genome evolution in the eremothecium clade of the Saccharomyces complex revealed by comparative genomics.
FOG04248
EOG8ZW3S3
sce:absent
Genes: 3
FOG04249
EOG8ZW3S3
sce:absent
Genes: 2
FOG04250
EOG8S1RPT
sce:absent
Genes: 4