| Standard Name | DIP5 |
|---|---|
| Systematic Name | YPL265W |
| Feature Type | ORF, Verified |
| Description | Dicarboxylic amino acid permease; mediates high-affinity and high-capacity transport of L-glutamate and L-aspartate; also a transporter for Gln, Asn, Ser, Ala, and Gly; relocalizes from plasma membrane to vacuole upon DNA replication stress (1, 2, 3) |
| Name Description | DIcarboxylic amino acid Permease |
| Chromosomal Location | |
|---|---|
Gene Ontology Annotations All DIP5 GO evidence and references
| View Computational GO annotations for DIP5 | |
| Molecular Function | |
| Manually curated | |
| Biological Process | |
| Manually curated | |
| Cellular Component | |
| Manually curated | |
| High-throughput |
Mutant phenotypes All DIP5 Phenotype evidence and references
interactions All DIP5 Interaction evidence and references
| 65 total interaction(s) for 60 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 DIP5 Protein evidence and references
| Localization | |
|---|---|
| Phosphorylation | PhosphoGRID | PhosphoPep Database |
| Structure | |
| Homologs |
sequence information
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| Last Update | Coordinates: 1996-07-31 | Sequence: 1996-07-31 | ||||||||||||
| Subfeature details |
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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) | TCDB | UniProtKB |
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| Primary SGDID | S000006186 |
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References cited on this page View Complete Literature Guide for DIP5
| 1) | Regenberg B, et al. (1999) Substrate specificity and gene expression of the amino-acid permeases in Saccharomyces cerevisiae. Curr Genet 36(6):317-28 |
| 2) | Regenberg B, et al. (1998) Dip5p mediates high-affinity and high-capacity transport of L-glutamate and L-aspartate in Saccharomyces cerevisiae. Curr Genet 33(3):171-7 |
| 3) | Tkach JM, et al. (2012) Dissecting DNA damage response pathways by analysing protein localization and abundance changes during DNA replication stress. Nat Cell Biol 14(9):966-76 |




