MET5/YJR137C Summary Help

MET5 BASIC INFORMATION

Standard Name MET5 1
Systematic Name YJR137C
Alias ECM17 2
Feature Type ORF, Verified
Description Sulfite reductase beta subunit, involved in amino acid biosynthesis, transcription repressed by methionine (3, 4)
Name Description METhionine requiring 1
GO Annotations All MET5 GO evidence and references
    View Computational GO annotations for MET5
Molecular Function
Manually curated
Biological Process
Manually curated
High-throughput
Cellular Component
Manually curated
High-throughput
Pathways
Mutant Phenotype All MET5 Phenotype details and references
Classical genetics
null
reduction of function
unspecified
Large-scale survey
null
Interactions MET5 All interactions details and references
8 total interaction(s) for 6 unique genes/features.
Physical Interactions
  • Affinity Capture-MS: 6
  • Affinity Capture-RNA: 1

Genetic Interactions
  • Synthetic Lethality: 1

Sequence Information
ChrX:683275 to 678947 | ORF Map | GBrowse
Note: this feature is encoded on the Crick strand.
Gbrowse
Genetic position: 84 cM
Last Update Coordinates: 2009-02-18 | Sequence: 1996-07-31
Subfeature details
Relative
Coordinates
Chromosomal
Coordinates
Most Recent Updates
Coordinates Sequence
CDS 1..4329 683275..678947 2009-02-18 1996-07-31
External Links All Associated Seq | E.C. | Entrez Gene | Entrez RefSeq Protein | MIPS | UniProtKB
Primary SGDIDS000003898

MET5 RESOURCES

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SGD ORF mapGBrowse
SGD ORF map
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  • Literature
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  • Sequence Analysis Tools
  • Protein Info & Structure
  • Localization Resources
  • Interactions
  • Phenotype Resources
  • Maps & Displays
  • Comparison Resources
  • Functional Analysis

Click on histogram for expression summary
Expression Summary histogram

REFERENCES CITED ON THIS PAGE [View Complete Literature Guide for MET5]

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) Lussier M, et al.  (1997) Large scale identification of genes involved in cell surface biosynthesis and architecture in Saccharomyces cerevisiae. Genetics 147(2):435-50
3) Hansen J, et al.  (1997) Siroheme biosynthesis in Saccharomyces cerevisiae requires the products of both the MET1 and MET8 genes. FEBS Lett 401(1):20-4
4) Mountain HA, et al.  (1991) Four major transcriptional responses in the methionine/threonine biosynthetic pathway of Saccharomyces cerevisiae. Yeast 7(8):781-803