| Systematic Name | Yjr061wp |
|---|---|
| ORF Classification | Uncharacterized |
| Description | Putative protein of unknown function; non-essential gene; transcription repressed by Rm101p; YJR061W has a paralog, MNN4, that arose from the whole genome duplication (1, 2, 3) |
| 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 Yjr061wp (InterPro) |
| Transmembrane Domains | There are 1 total predicted transmembrane domains (TMHMM) |
| Signal Peptide(s) | There are 1 total predicted predicted signal peptide(s) (SignalP) |
| Physical Interactions | There are 4 total physical interactions (BioGRID) |
| Homologs | PDB Homologs | BLASTP | BLASTP v. fungi | Fungal Alignment | Synteny Viewer |
| External Sequence Databases |
EBI: UPI000013B4AF | P40355 MIPS: YJR061W NCBI: 1015733 | 1019683 | 1176338 | 531233 | 6322521 | NP_012595.1 GenBank/EMBL/DDBJ: DAA08848.1 | L35564 | L47993 | Z49561 |
external links for Yjr061wp
| 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 | |
| Complexome | YeastRC Structure Prediction (Seattle) | ||
| DIP | |||
| GeneMANIA |
References cited on this page View Complete Literature Guide for Yjr061wp
| 1) | Lamb TM and Mitchell AP (2003) The transcription factor Rim101p governs ion tolerance and cell differentiation by direct repression of the regulatory genes NRG1 and SMP1 in Saccharomyces cerevisiae. Mol Cell Biol 23(2):677-86 |
| 2) | Conde R, et al. (2003) Screening for new yeast mutants affected in mannosylphosphorylation of cell wall mannoproteins. Yeast 20(14):1189-211 |
| 3) | 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 |



