Difference between revisions of "YJR151C"

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'''Description of YJR151C:''' Cell wall mannoprotein with similarity to Tir1p, Tir2p, Tir3p, and Tir4p; expressed under anaerobic conditions, completely repressed during aerobic growth<ref name='S000046725'>Sertil O, et al. (1997) The DAN1 gene of S. cerevisiae is regulated in parallel with the hypoxic genes, but by a different mechanism. Gene 192(2):199-205 {{SGDpaper|S000046725}} PMID 9224891</ref><ref name='S000048008'>Mrsa V, et al. (1999) Deletion of new covalently linked cell wall glycoproteins alters the electrophoretic mobility of phosphorylated wall components of Saccharomyces cerevisiae. J Bacteriol 181(10):3076-86
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'''Description of YJR151C:''' Cell wall mannoprotein with similarity to Tir1p, Tir2p, Tir3p, and Tir4p; expressed under anaerobic conditions, completely repressed during aerobic growth<ref name='S000048008'>Mrsa V, et al. (1999) Deletion of new covalently linked cell wall glycoproteins alters the electrophoretic mobility of phosphorylated wall components of Saccharomyces cerevisiae. J Bacteriol 181(10):3076-86 {{SGDpaper|S000048008}} PMID 10322008</ref><ref name='S000046725'>Sertil O, et al. (1997) The DAN1 gene of S. cerevisiae is regulated in parallel with the hypoxic genes, but by a different mechanism. Gene 192(2):199-205
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  {{SGDpaper|S000046725}} PMID 9224891</ref>
 
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Revision as of 13:05, 25 February 2010

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Systematic name YJR151C
Gene name DAN4
Aliases
Feature type ORF, Verified
Coordinates Chr X:715730..712245
Primary SGDID S000003912


Description of YJR151C: Cell wall mannoprotein with similarity to Tir1p, Tir2p, Tir3p, and Tir4p; expressed under anaerobic conditions, completely repressed during aerobic growth[1][2]




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References

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  1. Mrsa V, et al. (1999) Deletion of new covalently linked cell wall glycoproteins alters the electrophoretic mobility of phosphorylated wall components of Saccharomyces cerevisiae. J Bacteriol 181(10):3076-86 SGD PMID 10322008
  2. Sertil O, et al. (1997) The DAN1 gene of S. cerevisiae is regulated in parallel with the hypoxic genes, but by a different mechanism. Gene 192(2):199-205 SGD PMID 9224891

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