CAB5 BASIC INFORMATION
| Standard Name | CAB5 1 |
|---|---|
| Systematic Name | YDR196C |
| Feature Type | ORF, Verified |
| Description | Probable dephospho-CoA kinase (DPCK) that catalyzes the last step in coenzyme A biosynthesis; null mutant lethality is complemented by E. coli coaE (encoding DPCK); detected in purified mitochondria in high-throughput studies (1, 2, 3, 4, 5)
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| GO Annotations | All CAB5 GO evidence and references |
|---|---|
| View Computational GO annotations for CAB5 | |
| Molecular Function | |
| Manually curated | |
| High-throughput | |
| Biological Process | |
| Manually curated | |
| Cellular Component | |
| High-throughput |
| Pathways |
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| Mutant Phenotype | All CAB5 Phenotype details and references |
|---|---|
| Classical genetics | |
| conditional | |
| null | |
| Large-scale survey | |
| conditional | |
| null |
| Interactions | CAB5 All interactions details and references |
|---|---|
| 22 total interaction(s) for 13 unique genes/features. | |
| Physical Interactions |
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| Genetic Interactions |
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| External Links | All Associated Seq | Entrez Gene | Entrez RefSeq Protein | MIPS | UniProtKB |
|---|
| Primary SGDID | S000002604 |
|---|
ADDITIONAL INFORMATION for CAB5
REFERENCES CITED ON THIS PAGE [View Complete Literature Guide for CAB5]
| 1) | Olzhausen J, et al. (2009) Genetic analysis of coenzyme A biosynthesis in the yeast Saccharomyces cerevisiae: identification of a conditional mutation in the pantothenate kinase gene CAB1. Curr Genet 55(2):163-73 |
| 2) | Giaever G, et al. (2002) Functional profiling of the Saccharomyces cerevisiae genome. Nature 418(6896):387-91 |
| 3) | Tatusov RL, et al. (2000) The COG database: a tool for genome-scale analysis of protein functions and evolution. Nucleic Acids Res 28(1):33-6 |
| 4) | Daugherty M, et al. (2002) Complete reconstitution of the human coenzyme A biosynthetic pathway via comparative genomics. J Biol Chem 277(24):21431-9 |
| 5) | Reinders J, et al. (2006) Toward the complete yeast mitochondrial proteome: multidimensional separation techniques for mitochondrial proteomics. J Proteome Res 5(7):1543-54 |






