Difference between revisions of "YDR259C"

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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Systematic name''' || [http://db.yeastgenome.org/cgi-bin/locus.pl?locus=YDR259C YDR259C]  
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Systematic name''' || [http://www.yeastgenome.org/cgi-bin/locus.pl?dbid=S000002667 YDR259C]  
 
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Gene name'''        ||''YAP6 ''
 
|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Gene name'''        ||''YAP6 ''
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Coordinates'''
 
|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Coordinates'''
|nowrap| Chr IV:975778..974627
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|nowrap| Chr IV:975782..974631
 
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Primary SGDID'''          || S000002667
 
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'''Description of {{PAGENAME}}:''' Putative basic leucine zipper (bZIP) transcription factor; overexpression increases sodium and lithium tolerance<ref name='S000048602'>Fernandes L, et al. (1997) Yap, a novel family of eight bZIP proteins in Saccharomyces cerevisiae with distinct biological functions. Mol Cell Biol 17(12):6982-93 {{SGDpaper|S000048602}} PMID 9372930</ref><ref name='S000045640'>Mendizabal I, et al. (1998) Yeast putative transcription factors involved in salt tolerance. FEBS Lett 425(2):323-8
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'''Description of YDR259C:''' Basic leucine zipper (bZIP) transcription factor; physically interacts with the Tup1-Cyc8 complex and recruits Tup1p to its targets; overexpression increases sodium and lithium tolerance; computational analysis suggests a role in regulation of expression of genes involved in carbohydrate metabolism<ref name='S000048602'>Fernandes L, et al. (1997) Yap, a novel family of eight bZIP proteins in Saccharomyces cerevisiae with distinct biological functions. Mol Cell Biol 17(12):6982-93 {{SGDpaper|S000048602}} PMID 9372930</ref><ref name='S000145363'>Hanlon SE, et al. (2011) The Stress Response Factors Yap6, Cin5, Phd1, and Skn7 Direct Targeting of the Conserved Co-Repressor Tup1-Ssn6 in S. cerevisiae. PLoS One 6(4):e19060 {{SGDpaper|S000145363}} PMID 21552514</ref><ref name='S000045640'>Mendizabal I, et al. (1998) Yeast putative transcription factors involved in salt tolerance. FEBS Lett 425(2):323-8 {{SGDpaper|S000045640}} PMID 9559673</ref><ref name='S000126853'>Ward LD and Bussemaker HJ (2008) Predicting functional transcription factor binding through alignment-free and affinity-based analysis of orthologous promoter sequences. Bioinformatics 24(13):i165-71
  {{SGDpaper|S000045640}} PMID 9559673</ref>
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  {{SGDpaper|S000126853}} PMID 18586710</ref>
 
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==Community Commentary==
 
==Community Commentary==
 
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Specifically higher expression in carbon limited chemostat cultures versus carbon excess.
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<ref>Boer VM, et al. (2003) The genome-wide transcriptional responses of Saccharomyces cerevisiae grown on glucose in aerobic chemostat cultures limited for carbon, nitrogen, phosphorus, or sulfur.
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J Biol Chem 278(5):3265-74</ref>
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==References==
 
==References==
 
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Latest revision as of 07:45, 23 January 2012

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Systematic name YDR259C
Gene name YAP6
Aliases HAL7
Feature type ORF, Verified
Coordinates Chr IV:975782..974631
Primary SGDID S000002667


Description of YDR259C: Basic leucine zipper (bZIP) transcription factor; physically interacts with the Tup1-Cyc8 complex and recruits Tup1p to its targets; overexpression increases sodium and lithium tolerance; computational analysis suggests a role in regulation of expression of genes involved in carbohydrate metabolism[1][2][3][4]




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References

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  1. Fernandes L, et al. (1997) Yap, a novel family of eight bZIP proteins in Saccharomyces cerevisiae with distinct biological functions. Mol Cell Biol 17(12):6982-93 SGD PMID 9372930
  2. Hanlon SE, et al. (2011) The Stress Response Factors Yap6, Cin5, Phd1, and Skn7 Direct Targeting of the Conserved Co-Repressor Tup1-Ssn6 in S. cerevisiae. PLoS One 6(4):e19060 SGD PMID 21552514
  3. Mendizabal I, et al. (1998) Yeast putative transcription factors involved in salt tolerance. FEBS Lett 425(2):323-8 SGD PMID 9559673
  4. Ward LD and Bussemaker HJ (2008) Predicting functional transcription factor binding through alignment-free and affinity-based analysis of orthologous promoter sequences. Bioinformatics 24(13):i165-71 SGD PMID 18586710

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