Difference between revisions of "YBL098W"

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'''Description of YBL098W:''' Kynurenine 3-mono oxygenase, required for the de novo biosynthesis of NAD from tryptophan via kynurenine; expression regulated by Hst1p; putative therapeutic target for Huntington disease<ref name='S000081352'>Giorgini F, et al. (2005) A genomic screen in yeast implicates kynurenine 3-monooxygenase as a therapeutic target for Huntington disease. Nat Genet 37(5):526-31 {{SGDpaper|S000081352}} PMID 15806102</ref><ref name='S000074280'>Bedalov A, et al. (2003) NAD+-dependent deacetylase Hst1p controls biosynthesis and cellular NAD+ levels in Saccharomyces cerevisiae. Mol Cell Biol 23(19):7044-54 {{SGDpaper|S000074280}} PMID 12972620</ref><ref name='S000069977'>Panozzo C, et al. (2002) Aerobic and anaerobic NAD+ metabolism in Saccharomyces cerevisiae. FEBS Lett 517(1-3):97-102
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'''Description of YBL098W:''' Kynurenine 3-mono oxygenase, required for the de novo biosynthesis of NAD from tryptophan via kynurenine; expression regulated by Hst1p; putative therapeutic target for Huntington disease<ref name='S000069977'>Panozzo C, et al. (2002) Aerobic and anaerobic NAD+ metabolism in Saccharomyces cerevisiae. FEBS Lett 517(1-3):97-102 {{SGDpaper|S000069977}} PMID 12062417</ref><ref name='S000074280'>Bedalov A, et al. (2003) NAD+-dependent deacetylase Hst1p controls biosynthesis and cellular NAD+ levels in Saccharomyces cerevisiae. Mol Cell Biol 23(19):7044-54 {{SGDpaper|S000074280}} PMID 12972620</ref><ref name='S000081352'>Giorgini F, et al. (2005) A genomic screen in yeast implicates kynurenine 3-monooxygenase as a therapeutic target for Huntington disease. Nat Genet 37(5):526-31
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  {{SGDpaper|S000081352}} PMID 15806102</ref>
 
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Revision as of 04:40, 18 December 2008

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Systematic name YBL098W
Gene name BNA4
Aliases
Feature type ORF, Verified
Coordinates Chr II:39142..40524
Primary SGDID S000000194


Description of YBL098W: Kynurenine 3-mono oxygenase, required for the de novo biosynthesis of NAD from tryptophan via kynurenine; expression regulated by Hst1p; putative therapeutic target for Huntington disease[1][2][3]




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References

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  1. Panozzo C, et al. (2002) Aerobic and anaerobic NAD+ metabolism in Saccharomyces cerevisiae. FEBS Lett 517(1-3):97-102 SGD PMID 12062417
  2. Bedalov A, et al. (2003) NAD+-dependent deacetylase Hst1p controls biosynthesis and cellular NAD+ levels in Saccharomyces cerevisiae. Mol Cell Biol 23(19):7044-54 SGD PMID 12972620
  3. Giorgini F, et al. (2005) A genomic screen in yeast implicates kynurenine 3-monooxygenase as a therapeutic target for Huntington disease. Nat Genet 37(5):526-31 SGD PMID 15806102

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