| Standard Name | PEX30 |
|---|---|
| Systematic Name | YLR324W |
| Feature Type | ORF, Verified |
| Description | Peroxisomal integral membrane protein; involved in negative regulation of peroxisome number; partially functionally redundant with Pex31p; genetic interactions suggest action at a step downstream of steps mediated by Pex28p and Pex29p; PEX30 has a paralog, PEX31, that arose from the whole genome duplication (1, 2) |
| Name Description | PEroXisome related 1 |
| Chromosomal Location | |
|---|---|
Gene Ontology Annotations All PEX30 GO evidence and references
| View Computational GO annotations for PEX30 | |
| Molecular Function | |
| Manually curated |
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| Biological Process | |
| Manually curated | |
| Cellular Component | |
| Manually curated | |
| High-throughput |
Mutant phenotypes All PEX30 Phenotype evidence and references
| Large-scale survey | |
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| null |
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| Resources |
interactions All PEX30 Interaction evidence and references
| 53 total interaction(s) for 42 unique genes/features. | |
| Physical Interactions |
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| Genetic Interactions |
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| Resources |
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Expression Summary
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| Resources |
Protein Information All PEX30 Protein evidence and references
| Localization | |
|---|---|
| Phosphorylation | PhosphoGRID | PhosphoPep Database |
| Structure | |
| Homologs |
sequence information
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| Last Update | Coordinates: 2004-02-05 | Sequence: 1996-07-31 | ||||||||||||
| Subfeature details |
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| Retrieve sequences | |||||||||||||
Analyze Sequence
| S288C only | |
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| S288C vs. other species | |
| S288C vs. other strains |
Resources
| External Links | All Associated Seq | Entrez Gene | Entrez RefSeq Protein | MIPS | Search all NCBI (Entrez) | UniProtKB |
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| Primary SGDID | S000004316 |
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References cited on this page View Complete Literature Guide for PEX30
| 1) | Vizeacoumar FJ, et al. (2004) Pex30p, Pex31p, and Pex32p form a family of peroxisomal integral membrane proteins regulating peroxisome size and number in Saccharomyces cerevisiae. Mol Biol Cell 15(2):665-77 |
| 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 |




