FOG03633
EOG8ZS7NX

sce:SYS1

Genes: 29

SGD Description
Integral membrane protein of the Golgi; required for targeting of the Arf-like GTPase Arl3p to the Golgi; multicopy suppressor of ypt6 null mutation


AspGD Description
Ortholog(s) have role in Golgi to endosome transport, Golgi to plasma membrane protein transport, protein targeting to Golgi, vesicle organization and integral component of Golgi membrane, trans-Golgi network localization


References

Masson P, et al. (1986). Yeast adenylate cyclase catalytic domain is carboxy terminal.

Pathak R, et al. (1995 Apr 3). The essential yeast NLT1 gene encodes the 64 kDa glycoprotein subunit of the oligosaccharyl transferase.

Hitchcock AL, et al. (2003 Oct 28). A subset of membrane-associated proteins is ubiquitinated in response to mutations in the endoplasmic reticulum degradation machinery.

Behnia R, et al. (2004 May). Targeting of the Arf-like GTPase Arl3p to the Golgi requires N-terminal acetylation and the membrane protein Sys1p.

Setty SR, et al. (2004 May). Golgi targeting of ARF-like GTPase Arl3p requires its Nalpha-acetylation and the integral membrane protein Sys1p.

Kim H, et al. (2006 Jul 25). A global topology map of the Saccharomyces cerevisiae membrane proteome.

Mitochondrial localization predictions
Predotar TargetP MitoProt
Raw data
Phobius transmembrane predictions
29 genes with posterior transmembrane prediction > 50%


FOG03634
EOG87H48G

sce:absent

Genes: 5
 





 
Mitochondrial localization predictions
Predotar TargetP MitoProt
Raw data
Phobius transmembrane predictions
0 genes with posterior transmembrane prediction > 50%


FOG03635
EOG87H48G
EOG8ZS7NX

sce:TOD6

Genes: 4

SGD Description
PAC motif binding protein involved in rRNA and ribosome biogenesis; subunit of the RPD3L histone deacetylase complex; Myb-like HTH transcription factor; hypophosphorylated by rapamycin treatment in a Sch9p-dependent manner; activated in stochastic pulses of nuclear localization


References

Wade CH, et al. (2006 Mar). The budding yeast rRNA and ribosome biosynthesis (RRB) regulon contains over 200 genes.

Shevchenko A, et al. (2008). Chromatin Central: towards the comparative proteome by accurate mapping of the yeast proteomic environment.

Badis G, et al. (2008 Dec 26). A library of yeast transcription factor motifs reveals a widespread function for Rsc3 in targeting nucleosome exclusion at promoters.

Zhu C, et al. (2009 Apr). High-resolution DNA-binding specificity analysis of yeast transcription factors.

Mitochondrial localization predictions
Predotar TargetP MitoProt
Raw data
Phobius transmembrane predictions
0 genes with posterior transmembrane prediction > 50%


FOG03636
EOG866T68
EOG87H48G

sce:DOT6

Genes: 4

SGD Description
Protein involved in rRNA and ribosome biogenesis; activated in stochastic pulses of nuclear localization; binds polymerase A and C motif; subunit of the RPD3L histone deacetylase complex; has chromatin specific SANT domain; involved in telomeric gene silencing and filamentation; relative distribution to the nucleus increases upon DNA replication stress


References

Singer MS, et al. (1998 Oct). Identification of high-copy disruptors of telomeric silencing in Saccharomyces cerevisiae.

Shevchenko A, et al. (2008). Chromatin Central: towards the comparative proteome by accurate mapping of the yeast proteomic environment.

Badis G, et al. (2008 Dec 26). A library of yeast transcription factor motifs reveals a widespread function for Rsc3 in targeting nucleosome exclusion at promoters.

Zhu C, et al. (2009 Apr). High-resolution DNA-binding specificity analysis of yeast transcription factors.

Mitochondrial localization predictions
Predotar TargetP MitoProt
Raw data
Phobius transmembrane predictions
0 genes with posterior transmembrane prediction > 50%


FOG03637
EOG87H48G

sce:absent

Genes: 3
 





 
Mitochondrial localization predictions
Predotar TargetP MitoProt
Raw data
Phobius transmembrane predictions
0 genes with posterior transmembrane prediction > 50%


FOG03638
EOG87H48G

sce:absent

Genes: 4

References

Chen H, et al. (2004 Apr 6). Tyrosol is a quorum-sensing molecule in Candida albicans.

Zakikhany K, et al. (2007 Dec). In vivo transcript profiling of Candida albicans identifies a gene essential for interepithelial dissemination.

Rosenbach A, et al. (2010 Jul). Adaptations of Candida albicans for growth in the mammalian intestinal tract.

Martin R, et al. (2011 Apr 7). The Candida albicans-specific gene EED1 encodes a key regulator of hyphal extension.

Wächtler B, et al. (2011 Feb 23). From attachment to damage: defined genes of Candida albicans mediate adhesion, invasion and damage during interaction with oral epithelial cells.

Hsu CC, et al. (2013 Jul). The inhibitory activity of linalool against the filamentous growth and biofilm formation in Candida albicans.

Mitochondrial localization predictions
Predotar TargetP MitoProt
Raw data
Phobius transmembrane predictions
0 genes with posterior transmembrane prediction > 50%


FOG03639
EOG8ZS7NX

sce:absent

Genes: 1
 





 
Mitochondrial localization predictions
Predotar TargetP MitoProt
Raw data
Phobius transmembrane predictions
1 genes with posterior transmembrane prediction > 50%


FOG03640
EOG866T68

sce:absent

Genes: 1
 





 
Mitochondrial localization predictions
Predotar TargetP MitoProt
Raw data
Phobius transmembrane predictions
0 genes with posterior transmembrane prediction > 50%