FOG03651
EOG8NP5JV

sce:absent

Genes: 16

AspGD Description
Ortholog(s) have role in fatty acid catabolic process|Ortholog of A. nidulans FGSC A4 : AN7948, Aspergillus tubingensis : Asptu1_0130978, Aspergillus kawachii : Aspka1_0180797, Aspergillus acidus : Aspfo1_0071750 and Aspergillus versicolor : Aspve1_0063096|Triacylglycerol lipase|Triacylglycerol lipase

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


FOG03652
EOG8NP5JV

sce:absent

Genes: 17

AspGD Description
Triacylglycerol lipase

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


FOG03653
EOG81894C
EOG859ZWV
EOG8NP5JV
EOG8R4XJ4
EOG8V15G6

sce:absent

Genes: 16

AspGD Description
Ortholog of A. nidulans FGSC A4 : AN6383, A. fumigatus Af293 : Afu5g00450, Afu6g10780, A. oryzae RIB40 : AO090003001528, AO090023001010 and Aspergillus wentii : Aspwe1_0052273, Aspwe1_0067889|Ortholog of A. nidulans FGSC A4 : AN6389, A. fumigatus Af293 : Afu1g03300, Afu6g10800, A. oryzae RIB40 : AO090023000186, Aspergillus wentii : Aspwe1_0039443 and Aspergillus sydowii : Aspsy1_0058314|Protein of unknown function

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


FOG03654
EOG818945
EOG859ZWV
EOG8K6DMB
EOG8XKSPN

sce:absent

Genes: 15

PomBase Description
lisophospholipase family protein


AspGD Description
Protein of unknown function|Putative carboxylesterase|Ortholog of A. nidulans FGSC A4 : AN5608, AN4473, A. fumigatus Af293 : Afu4g07720, A. niger CBS 513.88 : An14g07030 and A. oryzae RIB40 : AO090023000800, AO090009000070


References

Gregan J, et al. (2005 Sep 20). Novel genes required for meiotic chromosome segregation are identified by a high-throughput knockout screen in fission yeast.

Rhind N, et al. (2011 May 20). Comparative functional genomics of the fission yeasts.

Anver S, et al. (2014 Aug). Yeast X-chromosome-associated protein 5 (Xap5) functions with H2A.Z to suppress aberrant transcripts.

Carpy A, et al. (2014 Aug). Absolute proteome and phosphoproteome dynamics during the cell cycle of Schizosaccharomyces pombe (Fission Yeast).

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


FOG03655
EOG85QG1C
EOG8ZKH58

sce:absent

Genes: 7
 





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


FOG03656
EOG8NP5JV
EOG8ZKH58

sce:absent

Genes: 6
 





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


FOG03657
EOG85QG1C
EOG8GTJ0P

sce:absent

Genes: 6
 





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


FOG03658
EOG859ZWV

sce:absent

Genes: 5

AspGD Description
Ortholog of A. nidulans FGSC A4 : AN1433, A. fumigatus Af293 : Afu1g01310, Afu8g04210, A. niger CBS 513.88 : An16g08870, An13g01880 and A. oryzae RIB40 : AO090701000542, AO090103000036|Triacylglycerol lipase

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


FOG03659
EOG8ZKH58

sce:absent

Genes: 5

AspGD Description
Ortholog(s) have role in activation of MAPK activity involved in cell wall organization or biogenesis, asexual sporulation resulting in formation of a cellular spore and cellular response to drug, more


References

Muthuvijayan V, et al. (2004). In silico reconstruction of nutrient-sensing signal transduction pathways in Aspergillus nidulans.

Fujioka T, et al. (2007 Aug). MpkA-Dependent and -independent cell wall integrity signaling in Aspergillus nidulans.

Malavazi I, et al. (2007 Oct). Transcriptome analysis of the Aspergillus nidulans AtmA (ATM, Ataxia-Telangiectasia mutated) null mutant.

de Groot PW, et al. (2009 Mar). Comprehensive genomic analysis of cell wall genes in Aspergillus nidulans.

Kriangkripipat T, et al. (2009 Oct). Aspergillus nidulans protein O-mannosyltransferases play roles in cell wall integrity and developmental patterning.

Futagami T, et al. (2011 Nov). Putative stress sensors WscA and WscB are involved in hypo-osmotic and acidic pH stress tolerance in Aspergillus nidulans.

Futagami T, et al. (2012 Mar 1). Putative cell wall integrity sensor proteins in Aspergillus nidulans.

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


FOG03660
EOG8R4XJ4

sce:absent

Genes: 5
 





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


FOG03661
EOG815DVR
EOG859ZWV

sce:absent

Genes: 3

AspGD Description
Ortholog of A. nidulans FGSC A4 : AN1314, A. niger CBS 513.88 : An11g08070, Neosartorya fischeri NRRL 181 : NFIA_030520 and Aspergillus versicolor : Aspve1_0031176|Ortholog of A. nidulans FGSC A4 : AN1314, A. niger CBS 513.88 : An09g03760, Neosartorya fischeri NRRL 181 : NFIA_030520 and Aspergillus versicolor : Aspve1_0031176

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


FOG03662
EOG8GTJ0P

sce:absent

Genes: 3

AspGD Description
Ortholog(s) have role in activation of MAPK activity involved in cell wall organization or biogenesis, asexual sporulation resulting in formation of a cellular spore and cellular response to drug, more


References

Muthuvijayan V, et al. (2004). In silico reconstruction of nutrient-sensing signal transduction pathways in Aspergillus nidulans.

Fujioka T, et al. (2007 Aug). MpkA-Dependent and -independent cell wall integrity signaling in Aspergillus nidulans.

Malavazi I, et al. (2007 Oct). Transcriptome analysis of the Aspergillus nidulans AtmA (ATM, Ataxia-Telangiectasia mutated) null mutant.

de Groot PW, et al. (2009 Mar). Comprehensive genomic analysis of cell wall genes in Aspergillus nidulans.

Kriangkripipat T, et al. (2009 Oct). Aspergillus nidulans protein O-mannosyltransferases play roles in cell wall integrity and developmental patterning.

Futagami T, et al. (2011 Nov). Putative stress sensors WscA and WscB are involved in hypo-osmotic and acidic pH stress tolerance in Aspergillus nidulans.

Futagami T, et al. (2012 Mar 1). Putative cell wall integrity sensor proteins in Aspergillus nidulans.

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


FOG03663
EOG859ZWV

sce:absent

Genes: 3

AspGD Description
Triacylglycerol lipase

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


FOG03664
EOG8GTJ0P

sce:absent

Genes: 3
 





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


FOG03665
EOG85QG1C

sce:absent

Genes: 2
 





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


FOG03666
EOG85QG1C

sce:WSC3

Genes: 2

SGD Description
Sensor-transducer of the stress-activated PKC1-MPK1 signaling pathway; involved in maintenance of cell wall integrity; involved in response to heat shock and other stressors; regulates 1,3-beta-glucan synthesis; WSC3 has a paralog, WSC2, that arose from the whole genome duplication


References

Zhang Z, et al. (2005). Mapping of transcription start sites in Saccharomyces cerevisiae using 5' SAGE.

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
2 genes with posterior transmembrane prediction > 50%


FOG03667
EOG8ZKH58

sce:absent

Genes: 3
 





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


FOG03668
EOG8R4XJ4

sce:absent

Genes: 3
 





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


FOG03669
EOG8NP5JV

sce:absent

Genes: 1

AspGD Description
Triacylglycerol lipase

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


FOG03670
EOG85QG1C

sce:WSC4;SLG1;WSC2

Genes: 11

SGD Description
Endoplasmic reticulum (ER) membrane protein; involved in the translocation of soluble secretory proteins and insertion of membrane proteins into the ER membrane; may also have a role in the stress response but has only partial functional overlap with WSC1-3|Sensor-transducer of the stress-activated PKC1-MPK1 kinase pathway; involved in maintenance of cell wall integrity; required for mitophagy; involved in organization of the actin cytoskeleton; secretory pathway Wsc1p is required for the arrest of secretion response|Sensor-transducer of the stress-activated PKC1-MPK1 signaling pathway; involved in maintenance of cell wall integrity and recovery from heat shock; required for the arrest of secretion response; WSC2 has a paralog, WSC3, that arose from the whole genome duplication


AspGD Description
Ortholog(s) have role in activation of MAPK activity involved in cell wall organization or biogenesis and cell septum, cell surface, fungal-type cell wall, membrane localization


References

Jacoby JJ, et al. (1998 Apr). A screen for upstream components of the yeast protein kinase C signal transduction pathway identifies the product of the SLG1 gene.

Lodder AL, et al. (1999 Aug). Characterization of the Wsc1 protein, a putative receptor in the stress response of Saccharomyces cerevisiae.

Ivanovska I, et al. (2000 Jan). SLG1 plays a role during G1 in the decision to enter or exit the cell cycle.

Philip B, et al. (2001 Jan). Wsc1 and Mid2 are cell surface sensors for cell wall integrity signaling that act through Rom2, a guanine nucleotide exchange factor for Rho1.

Sekiya-Kawasaki M, et al. (2002 Oct). Dissection of upstream regulatory components of the Rho1p effector, 1,3-beta-glucan synthase, in Saccharomyces cerevisiae.

Vay HA, et al. (2004 Oct). Mutational analysis of the cytoplasmic domain of the Wsc1 cell wall stress sensor.

Gualtieri T, et al. (2004 Oct 15). The cell wall sensor Wsc1p is involved in reorganization of actin cytoskeleton in response to hypo-osmotic shock in Saccharomyces cerevisiae.

Gruhler A, et al. (2005 Mar). Quantitative phosphoproteomics applied to the yeast pheromone signaling pathway.

Serrano R, et al. (2006 Dec 29). Signaling alkaline pH stress in the yeast Saccharomyces cerevisiae through the Wsc1 cell surface sensor and the Slt2 MAPK pathway.

Kung LA, et al. (2009). Global analysis of the glycoproteome in Saccharomyces cerevisiae reveals new roles for protein glycosylation in eukaryotes.

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


FOG03671
EOG8GTJ0P

sce:absent

Genes: 6

PomBase Description
transmembrane receptor Wsc1 (predicted)


AspGD Description
Putative sensor of PKC1-MPK1

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