Lifespan changes: From wild type to daf-22;mekk-3
20
20.59
-1.53%
RNAi of mekk-3 was unable to increase lifespan in daf-22(m130).
Double mutant daf-22(m130);mekk-3(RNAi) has a lifespan of 20.59 days, while single mutant mekk-3(RNAi) has a lifespan of 31.95 days, single mutant daf-22(m130) has a lifespan of 20.34 days and wild type has a lifespan of 20.91 days.
Opposite lifespan effects of single mutants
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
18.56
-5.31%
RNAi of mekk-3 was unable to increase lifespan in daf-22(m130).
Double mutant daf-22(m130);mekk-3(RNAi) has a lifespan of 18.56 days, while single mutant mekk-3(RNAi) has a lifespan of 30.33 days, single mutant daf-22(m130) has a lifespan of 18.23 days and wild type has a lifespan of 19.6 days.
Opposite lifespan effects of single mutants
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
Non-specific lipid-transfer protein-like 2
Locus: CELE_Y57A10C.6
Wormbase description: daf-22 encodes the C. elegans ortholog of human sterol carrier protein SCP2, which catalyzes the final step in peroxisomal fatty acid beta-oxidation; in C. elegans, DAF-22 activity is required for dauer pheromone biosynthesis; daf-22 mutant animals cannot produce dauer pheromone, but can synthesize weakly active longer-chain fatty acid derivatives; in synthesizing dauer pheromone, DAF-22 acts downstream of DHS-28, the C. elegans ortholog of human HSD17B4 (hydroxysteroid (17-beta) dehydrogenase 4); a DAF-22::GFP fusion protein is expressed in a punctate pattern in the intestine, hypodermis, and body wall muscle throughout the life cycle; DAF-22 expression in the intestine is sufficient to produce dauer pheromone.
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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