Difference between revisions of "YER132C"

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'''Description of YER132C:''' Protein with an N-terminal kelch-like domain, putative negative regulator of early meiotic gene expression; required, with Mds3p, for growth under alkaline conditions<ref name='S000072262'>Davis DA, et al. (2002) Candida albicans Mds3p, a conserved regulator of pH responses and virulence identified through insertional mutagenesis. Genetics 162(4):1573-81 {{SGDpaper|S000072262}} PMID 12524333</ref><ref name='S000048503'>Benni ML and Neigeborn L (1997) Identification of a new class of negative regulators affecting sporulation-specific gene expression in yeast. Genetics 147(3):1351-66
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'''Description of YER132C:''' Protein with an N-terminal kelch-like domain, putative negative regulator of early meiotic gene expression; required, with Mds3p, for growth under alkaline conditions<ref name='S000048503'>Benni ML and Neigeborn L (1997) Identification of a new class of negative regulators affecting sporulation-specific gene expression in yeast. Genetics 147(3):1351-66 {{SGDpaper|S000048503}} PMID 9383076</ref><ref name='S000072262'>Davis DA, et al. (2002) Candida albicans Mds3p, a conserved regulator of pH responses and virulence identified through insertional mutagenesis. Genetics 162(4):1573-81
  {{SGDpaper|S000048503}} PMID 9383076</ref>
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  {{SGDpaper|S000072262}} PMID 12524333</ref>
 
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Revision as of 03:40, 18 December 2008

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Systematic name YER132C
Gene name PMD1
Aliases
Feature type ORF, Verified
Coordinates Chr V:430445..425184
Primary SGDID S000000934


Description of YER132C: Protein with an N-terminal kelch-like domain, putative negative regulator of early meiotic gene expression; required, with Mds3p, for growth under alkaline conditions[1][2]




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References

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  1. Benni ML and Neigeborn L (1997) Identification of a new class of negative regulators affecting sporulation-specific gene expression in yeast. Genetics 147(3):1351-66 SGD PMID 9383076
  2. Davis DA, et al. (2002) Candida albicans Mds3p, a conserved regulator of pH responses and virulence identified through insertional mutagenesis. Genetics 162(4):1573-81 SGD PMID 12524333

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