Difference between revisions of "YLR011W"
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− | '''Description of {{PAGENAME}}:''' | + | '''Description of {{PAGENAME}}:''' FMN-dependent NAD(P)H:quinone reductase that may be involved in quinone detoxification; gene expression increases in cultures shifted to a lower temperature<ref name='S000120824'>Sollner S, et al. (2007) Lot6p from Saccharomyces cerevisiae is a FMN-dependent reductase with a potential role in quinone detoxification. FEBS J 274(5):1328-39 {{SGDpaper|S000120824}} PMID 17298444</ref><ref name='S000060243'>Zhang L, et al. (2001) Multiple mechanisms regulate expression of low temperature responsive (LOT) genes in Saccharomyces cerevisiae. Biochem Biophys Res Commun 283(2):531-5 |
{{SGDpaper|S000060243}} PMID 11327734</ref> | {{SGDpaper|S000060243}} PMID 11327734</ref> | ||
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+ | <!-- PLEASE ADD Community Commentary ABOVE THIS MESSAGE. See below for an example of community annotation --> | ||
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+ | Specifically higher expression in carbon limited chemostat cultures versus carbon excess. | ||
+ | <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. | ||
+ | J Biol Chem 278(5):3265-74</ref> | ||
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Revision as of 13:02, 21 February 2007
Share your knowledge...Edit this entry! <protect>
Systematic name | YLR011W |
Gene name | LOT6 |
Aliases | |
Feature type | ORF, Verified |
Coordinates | Chr XII:169102..169677 |
Description of YLR011W: FMN-dependent NAD(P)H:quinone reductase that may be involved in quinone detoxification; gene expression increases in cultures shifted to a lower temperature[1][2]
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References
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- ↑ Sollner S, et al. (2007) Lot6p from Saccharomyces cerevisiae is a FMN-dependent reductase with a potential role in quinone detoxification. FEBS J 274(5):1328-39 SGD PMID 17298444
- ↑ Zhang L, et al. (2001) Multiple mechanisms regulate expression of low temperature responsive (LOT) genes in Saccharomyces cerevisiae. Biochem Biophys Res Commun 283(2):531-5 SGD PMID 11327734
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