Difference between revisions of "YOL055C"
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− | '''Description of YOL055C:''' Multifunctional protein with both hydroxymethylpyrimidine kinase and thiaminase activities; involved in thiamine biosynthesis and also in thiamine degradation; member of a gene family with THI21 and THI22; functionally redundant with Thi21p | + | '''Description of YOL055C:''' Multifunctional protein with both hydroxymethylpyrimidine kinase and thiaminase activities; involved in thiamine biosynthesis and also in thiamine degradation; member of a gene family with THI21 and THI22; functionally redundant with Thi21p<ref name='S000056318'>Llorente B, et al. (1999) Genetic redundancy and gene fusion in the genome of the Baker's yeast Saccharomyces cerevisiae: functional characterization of a three-member gene family involved in the thiamine biosynthetic pathway. Mol Microbiol 32(6):1140-52 {{SGDpaper|S000056318}} PMID 10383756</ref><ref name='S000082137'>Haas AL, et al. (2005) Thi20, a remarkable enzyme from Saccharomyces cerevisiae with dual thiamin biosynthetic and degradation activities. Bioorg Chem 33(4):338-44 |
− | {{SGDpaper| | + | {{SGDpaper|S000082137}} PMID 15967475</ref> |
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Revision as of 14:05, 31 March 2009
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Systematic name | YOL055C |
Gene name | THI20 |
Aliases | |
Feature type | ORF, Verified |
Coordinates | Chr XV:226074..224419 |
Primary SGDID | S000005416 |
Description of YOL055C: Multifunctional protein with both hydroxymethylpyrimidine kinase and thiaminase activities; involved in thiamine biosynthesis and also in thiamine degradation; member of a gene family with THI21 and THI22; functionally redundant with Thi21p[1][2]
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References
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- ↑ Llorente B, et al. (1999) Genetic redundancy and gene fusion in the genome of the Baker's yeast Saccharomyces cerevisiae: functional characterization of a three-member gene family involved in the thiamine biosynthetic pathway. Mol Microbiol 32(6):1140-52 SGD PMID 10383756
- ↑ Haas AL, et al. (2005) Thi20, a remarkable enzyme from Saccharomyces cerevisiae with dual thiamin biosynthetic and degradation activities. Bioorg Chem 33(4):338-44 SGD PMID 15967475
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