| Standard Name | Met32p |
|---|---|
| Systematic Name | Ydr253cp |
| ORF Classification | Verified |
| Description | Zinc-finger DNA-binding transcription factor; involved in transcriptional regulation of the methionine biosynthetic genes; targets strong transcriptional activator Met4p to promoters of sulfur metabolic genes; feedforward loop exists in the regulation of genes controlled by Met4p and Met32p; lack of such a loop for MET31 may account for the differential actions of Met32p and Met31p; MET32 has a paralog, MET31, that arose from the whole genome duplication (1, 2, 3) |
| Name Description | METhionine requiring 1 |
| Click on image for expanded interactive view |
|---|
| Post-translational Modifications | PhosphoGRID | PhosphoPep Database |
|---|---|
| Domains/motifs | See the graphical view and list of proteins that share domains/motifs in common with Met32p (InterPro) |
| Physical Interactions | There are 6 total physical interactions (BioGRID) |
| Homologs | PDB Homologs | BLASTP | BLASTP v. fungi | Fungal Alignment | Synteny Viewer |
| External Sequence Databases |
EBI: UPI000004F8F8 | Q12041 MIPS: YDR253C NCBI: 1136208 | 1226029 | 2501691 | 45269349 | 6320459 | NP_010539.1 GenBank/EMBL/DDBJ: DAA12093.1 | AY557729 | Z68329 | Z70202 |
external links for Met32p
| Homologs | Interaction Resources | Protein databases/Other | Localization Resources |
|---|---|---|---|
| BLASTP (NCBI) | BioGRID | SCOP Superfamily | Organelle DB |
| Ashbya (AGD) | BOND | GPMdb (Mass Spec.) | YPL+ |
| YGOB | BioPIXIE | MIPS | YeastGFP |
| YOGY | CYC2008 (complexes) | Pfam domains | YeastRC Public Image Repository |
| Complexome | YeastRC Structure Prediction (Seattle) | ||
| DIP | |||
| GeneMANIA |
References cited on this page View Complete Literature Guide for Met32p
| 1) | Blaiseau PL, et al. (1997) Met31p and Met32p, two related zinc finger proteins, are involved in transcriptional regulation of yeast sulfur amino acid metabolism. Mol Cell Biol 17(7):3640-8 |
| 2) | Byrne KP and Wolfe KH (2005) The Yeast Gene Order Browser: combining curated homology and syntenic context reveals gene fate in polyploid species. Genome Res 15(10):1456-61 |
| 3) | McIsaac RS, et al. (2012) Perturbation-based analysis and modeling of combinatorial regulation in the yeast sulfur assimilation pathway. Mol Biol Cell 23(15):2993-3007 |




