Other Ageing Factor: Mating type conversion - Saccharomyces cerevisiae
Last modified: Dec 09, 2014. Release 1 • Page created: May 19, 2024
Summary
Other Ageing Factor Name | : | Mating type conversion | ||||||||||||||||
Species | : | Saccharomyces cerevisiae | ||||||||||||||||
Ageing Relevance Analysis | : |
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Ageing Factor Stable ID | : | AF_009153 | ||||||||||||||||
Download | : | XML |
Observations
Ageing Phenotype
Data Type 1
no ageing phenotype observation—data type 1 available
Data Type 2
Ageing Relevance:
- yes (Exp. Analysis)
- yes, but no ageing factor assigned (Exp. Analysis)
- no (Exp. Analysis)
- putative (Comp. Analysis)
Organism | Ageing Factor | Lifespan Observation | Reference | ||||||||||||||||||||||
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# | Observation Stable ID | Species | Strain | Gene | Compound | Other Ageing Factor | Significant Lifespan Effect | Change | Observed Lifespan | Reference Lifespan | Lifespan Unit | Measure | Temperature | Temperature Unit | Sex/Mating Type | Description | Author | Year | PubMed | DOI | Source | ||||
1 | OB_004748 | Saccharomyces cerevisiae | W303AR5 |
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none | 2.93% | 21.1 | 20.5 | mean | 30 | ℃ | mata | Relative to the parental wild type strain switching W303AR5 mating type from MATa to MATalpha had no effect on life span. | Kaeberlein et al. | 1999 | 10521401 | Lifespan Observations Database (ID: 1777) |
Homology Analysis
no homology analysis observation available
References
MeSH Terms: Only a subset of the Medical Subject Headings terms is shown: the Major Topics MeSH terms. They describe one of the main topics discussed in the article denoted by an asterisk on the MeSH term or MeSH/Subheading combination on the PubMed page. MeSH terms that belong to the Ageing MeSH are highlighted in green.
- Kaeberlein M, McVey M, Guarente L:
The SIR2/3/4 complex and SIR2 alone promote longevity in Saccharomyces cerevisiae by two different mechanisms.
Genes Dev. 1999; 13: 2570-80.
PubMed (ID: 10521401), PubMed Central (ID: PMC317077)
MeSH Terms: DNA-Binding Proteins/physiology; Fungal Proteins/physiology; Histone Deacetylases; Saccharomyces cerevisiae Proteins; Saccharomyces cerevisiae/physiology; Silent Information Regulator Proteins, Saccharomyces cerevisiae; Trans-Activators/physiology