Difference between revisions of "YOR303W"
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− | '''Description of YOR303W:''' Small subunit of carbamoyl phosphate synthetase, which catalyzes a step in the synthesis of citrulline, an arginine precursor; translationally regulated by an attenuator peptide encoded by YOR302W within the CPA1 mRNA 5'-leader<ref name='S000055193'>Wang Z, et al. (1999) A highly conserved mechanism of regulated ribosome stalling mediated by fungal arginine attenuator peptides that appears independent of the charging status of arginyl-tRNAs. J Biol Chem 274(53):37565-74 {{SGDpaper|S000055193}} PMID 10608810 | + | '''Description of YOR303W:''' Small subunit of carbamoyl phosphate synthetase, which catalyzes a step in the synthesis of citrulline, an arginine precursor; translationally regulated by an attenuator peptide encoded by YOR302W within the CPA1 mRNA 5'-leader<ref name='S000050480'>Nyunoya H and Lusty CJ (1984) Sequence of the small subunit of yeast carbamyl phosphate synthetase and identification of its catalytic domain. J Biol Chem 259(15):9790-8 {{SGDpaper|S000050480}} PMID 6086650</ref><ref name='S000055193'>Wang Z, et al. (1999) A highly conserved mechanism of regulated ribosome stalling mediated by fungal arginine attenuator peptides that appears independent of the charging status of arginyl-tRNAs. J Biol Chem 274(53):37565-74 |
− | + | {{SGDpaper|S000055193}} PMID 10608810</ref> | |
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Revision as of 14:05, 31 March 2009
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Systematic name | YOR303W |
Gene name | CPA1 |
Aliases | |
Feature type | ORF, Verified |
Coordinates | Chr XV:882897..884132 |
Primary SGDID | S000005829 |
Description of YOR303W: Small subunit of carbamoyl phosphate synthetase, which catalyzes a step in the synthesis of citrulline, an arginine precursor; translationally regulated by an attenuator peptide encoded by YOR302W within the CPA1 mRNA 5'-leader[1][2]
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References
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- ↑ Nyunoya H and Lusty CJ (1984) Sequence of the small subunit of yeast carbamyl phosphate synthetase and identification of its catalytic domain. J Biol Chem 259(15):9790-8 SGD PMID 6086650
- ↑ Wang Z, et al. (1999) A highly conserved mechanism of regulated ribosome stalling mediated by fungal arginine attenuator peptides that appears independent of the charging status of arginyl-tRNAs. J Biol Chem 274(53):37565-74 SGD PMID 10608810
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