Lifespan changes: From wild type to gas-1;mekk-3
20
29.74
56.36%
mekk-3 RNAi significantly increased the lifespan of gas-1(fc21), a mutant in the NADH:ubiquinone oxidoreductase 49 kD subunit of Complex I.
Double mutant gas-1(fc21);mekk-3(RNAi) has a lifespan of 29.74 days, while single mutant mekk-3(RNAi) has a lifespan of 27.48 days, single mutant gas-1(fc21) has a lifespan of 19.27 days and wild type has a lifespan of 19.02 days.
Synergistic (positive)
Chamoli M et al., 2014, A novel kinase regulates dietary restriction-mediated longevity in Caenorhabditis elegans. Aging Cell. 13(4):641-55 24655420 Click here to select all mutants from this PubMed ID in the graph
20
33.3
101.09%
mekk-3 RNAi significantly increased the lifespan of gas-1(fc21), a mutant in the NADH:ubiquinone oxidoreductase 49 kD subunit of Complex I.
Double mutant gas-1(fc21);mekk-3(RNAi) has a lifespan of 33.3 days, while single mutant mekk-3(RNAi) has a lifespan of 30.38 days, single mutant gas-1(fc21) has a lifespan of 14.94 days and wild type has a lifespan of 16.56 days.
Enhancer, opposite lifespan effects
Chamoli M et al., 2014, A novel kinase regulates dietary restriction-mediated longevity in Caenorhabditis elegans. Aging Cell. 13(4):641-55 24655420 Click here to select all mutants from this PubMed ID in the graph
Probable NADH dehydrogenase [ubiquinone] iron-sulfur protein 2, mitochondrial
Locus: CELE_K09A9.5
Wormbase description: The gas-1 gene encodes a 49 kDa subunit of mitochondrial complex I that is required for oxidative phosphorylation, resistance to volatile anesthetics, fecundity, and normal lifespan; gas-1 is expressed in the nematode neuromuscular system; its subcellular distribution appears to be mitochondrial; drug effects on mutants versus wild-type indicate that gas-1 functions at least partially through presynaptic effects; gas-1 mutants have strongly reduced Complex I-dependent metabolism in mitochondria, while Complex II-dependent metabolism is conversely increased in mutants; gas-1 mitochondria look structurally normal.
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SynergyAge database hosts high-quality, manually curated information about the synergistic and antagonistic lifespan effects of genetic interventions in model organisms, also allowing users to explore the longevity relationships between genes in a visual way.
If you would like to cite this database please use:
Bunu, G., Toren, D., Ion, C. et al. SynergyAge, a curated database for synergistic and antagonistic interactions of longevity-associated genes. Sci Data 7, 366 (2020). https://doi.org/10.1038/s41597-020-00710-z
Group webpage: www.aging-research.group