MET3/YJR010W Summary Help

MET3 BASIC INFORMATION

Standard Name MET3 1
Systematic Name YJR010W
Feature Type ORF, Verified
Description ATP sulfurylase, catalyzes the primary step of intracellular sulfate activation, essential for assimilatory reduction of sulfate to sulfide, involved in methionine metabolism (2, 3)
Name Description METhionine requiring 1
GO Annotations All MET3 GO evidence and references
    View Computational GO annotations for MET3
Molecular Function
Manually curated
Biological Process
Manually curated
Cellular Component
High-throughput
Pathways
Mutant Phenotype All MET3 Phenotype details and references
Classical genetics
null
Large-scale survey
null
Interactions MET3 All interactions details and references
11 total interaction(s) for 8 unique genes/features.
Physical Interactions
  • Co-crystal Structure: 1
  • Reconstituted Complex: 1
  • Two-hybrid: 5

Genetic Interactions
  • Synthetic Growth Defect: 1
  • Synthetic Lethality: 2
  • Synthetic Rescue: 1

Sequence Information
ChrX:456231 to 457766 | ORF Map | GBrowse
Gbrowse
Genetic position: 3 cM
Last Update Coordinates: 2009-02-18 | Sequence: 1996-07-31
Subfeature details
Relative
Coordinates
Chromosomal
Coordinates
Most Recent Updates
Coordinates Sequence
CDS 1..1536 456231..457766 2009-02-18 1996-07-31
External Links All Associated Seq | E.C. | Entrez Gene | Entrez RefSeq Protein | MIPS | UniProtKB
Primary SGDIDS000003771

MET3 RESOURCES

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SGD ORF mapGBrowse
SGD ORF map
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  • Functional Analysis

Click on histogram for expression summary
Expression Summary histogram

REFERENCES CITED ON THIS PAGE [View Complete Literature Guide for MET3]

1) Masselot M and De Robichon-Szulmajster H  (1975) Methionine biosynthesis in Saccharomyces cerevisiae. I. Genetical analysis of auxotrophic mutants. Mol Gen Genet 139(2):121-32
2) Cherest H, et al.  (1985) Transcriptional regulation of the MET3 gene of Saccharomyces cerevisiae. Gene 34(2-3):269-81
3) Ullrich TC, et al.  (2001) Crystal structure of ATP sulfurylase from Saccharomyces cerevisiae, a key enzyme in sulfate activation. EMBO J 20(3):316-29