Difference between revisions of "YJR010W"

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'''Description of YJR010W:''' ATP sulfurylase, catalyzes the primary step of intracellular sulfate activation, essential for assimilatory reduction of sulfate to sulfide, involved in methionine metabolism<ref name='S000064036'>Ullrich TC, et al. (2001) Crystal structure of ATP sulfurylase from Saccharomyces cerevisiae, a key enzyme in sulfate activation. EMBO J 20(3):316-29 {{SGDpaper|S000064036}} PMID 11157739</ref><ref name='S000051856'>Cherest H, et al. (1985) Transcriptional regulation of the MET3 gene of Saccharomyces cerevisiae. Gene 34(2-3):269-81
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'''Description of YJR010W:''' ATP sulfurylase, catalyzes the primary step of intracellular sulfate activation, essential for assimilatory reduction of sulfate to sulfide, involved in methionine metabolism<ref name='S000051856'>Cherest H, et al. (1985) Transcriptional regulation of the MET3 gene of Saccharomyces cerevisiae. Gene 34(2-3):269-81 {{SGDpaper|S000051856}} PMID 2989110</ref><ref name='S000064036'>Ullrich TC, et al. (2001) Crystal structure of ATP sulfurylase from Saccharomyces cerevisiae, a key enzyme in sulfate activation. EMBO J 20(3):316-29
  {{SGDpaper|S000051856}} PMID 2989110</ref>
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  {{SGDpaper|S000064036}} PMID 11157739</ref>
 
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Revision as of 13:05, 31 March 2009

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Systematic name YJR010W
Gene name MET3
Aliases
Feature type ORF, Verified
Coordinates Chr X:456231..457766
Primary SGDID S000003771


Description of YJR010W: ATP sulfurylase, catalyzes the primary step of intracellular sulfate activation, essential for assimilatory reduction of sulfate to sulfide, involved in methionine metabolism[1][2]




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Community Commentary

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DNA and RNA Details

Other DNA and RNA Details

Other Topic: expression

Specifically higher expression in sulfur limited chemostat cultures versus sulfur excess. [3] [4]





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References

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  1. Cherest H, et al. (1985) Transcriptional regulation of the MET3 gene of Saccharomyces cerevisiae. Gene 34(2-3):269-81 SGD PMID 2989110
  2. Ullrich TC, et al. (2001) Crystal structure of ATP sulfurylase from Saccharomyces cerevisiae, a key enzyme in sulfate activation. EMBO J 20(3):316-29 SGD PMID 11157739
  3. 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. J Biol Chem 278(5):3265-74 SGD PMID 12414795
  4. submitted by Viktor Boer on 2003-07-25

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