Difference between revisions of "YDR232W"

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Specifically higher expression in carbon limited chemostat cultures versus carbon excess.
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<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.
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J Biol Chem 278(5):3265-74</ref>
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Revision as of 13:02, 21 February 2007

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Systematic name YDR232W
Gene name HEM1
Aliases CYD1
Feature type ORF, Verified
Coordinates Chr IV:927448..929094


Description of YDR232W: 5-aminolevulinate synthase, catalyzes the first step in the heme biosynthetic pathway; an N-terminal signal sequence is required for localization to the mitochondrial matrix; expression is regulated by Hap2p-Hap3p[1][2][3][4][5][6]




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References

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  1. Urban-Grimal D and Labbe-Bois R (1981) Genetic and biochemical characterization of mutants of Saccharomyces cerevisiae blocked in six different steps of heme biosynthesis. Mol Gen Genet 183(1):85-92 SGD PMID 7035824
  2. Haldi M and Guarente L (1989) N-terminal deletions of a mitochondrial signal sequence in yeast. Targeting information of delta-aminolevulinate synthase is encoded in non-overlapping regions. J Biol Chem 264(29):17107-12 SGD PMID 2507539
  3. Keng T, et al. (1986) The nine amino-terminal residues of delta-aminolevulinate synthase direct beta-galactosidase into the mitochondrial matrix. Mol Cell Biol 6(2):355-64 SGD PMID 3023841
  4. Urban-Grimal D, et al. (1986) The nucleotide sequence of the HEM1 gene and evidence for a precursor form of the mitochondrial 5-aminolevulinate synthase in Saccharomyces cerevisiae. Eur J Biochem 156(3):511-9 SGD PMID 3516694
  5. Gollub EG, et al. (1977) Yeast mutants deficient in heme biosynthesis and a heme mutant additionally blocked in cyclization of 2,3-oxidosqualene. J Biol Chem 252(9):2846-54 SGD PMID 323256
  6. Keng T and Guarente L (1987) Constitutive expression of the yeast HEM1 gene is actually a composite of activation and repression. Proc Natl Acad Sci U S A 84(24):9113-7 SGD PMID 3321068

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