Lifespan changes: From wild type to fem-1;fer-15;ire-1 / From fem-1;fer-15;ire-1 to multiple mutants
19.1
Triple mutant fem-1(hc17);fer-15(b26);ire-1(RNAi) has a lifespan of 19.1 days, while double mutant fem-1(hc17);fer-15(b26) has a lifespan of 22.2 days.
Henis-Korenblit S et al., 2010, Insulin/IGF-1 signaling mutants reprogram ER stress response regulators to promote longevity. Proc Natl Acad Sci U S A. 107(21):9730-5 20460307 Click here to select all mutants from this PubMed ID in the graph
14.1
Triple mutant fem-1(hc17);fer-15(b26);ire-1(RNAi) has a lifespan of 14.1 days, while double mutant fem-1(hc17);fer-15(b26) has a lifespan of 17.2 days.
Henis-Korenblit S et al., 2010, Insulin/IGF-1 signaling mutants reprogram ER stress response regulators to promote longevity. Proc Natl Acad Sci U S A. 107(21):9730-5 20460307 Click here to select all mutants from this PubMed ID in the graph
Sex-determining protein fem-1
Locus: CELE_F35D6.1
Wormbase description: The fem-1 gene encodes an ankyrin repeat-containing protein orthologous to human FEM1A and is required for masculinization of germline and somatic tissues; FEM-1 is widely expressed and functions as a second messenger in the sex determination pathway, connecting the membrane protein TRA-2A to the transcription factor TRA-1A which it negatively regulates; FEM-1 may also play a role in apoptosis, as it is a substrate for the CED-3 protease and can induce apoptosis when overexpressed in mammalian cells.
IRE1 kinase related;Serine/threonine-protein kinase
Locus: CELE_C41C4.4
Wormbase description: ire-1 encodes a transmembrane serine/threonine protein kinase and site-specific endoribonuclease orthologous to Saccharomyces cerevisiae inositol-requiring 1 protein kinase (Ire1) and human endoplasmic reticulum-to-nucleus signaling 1 (ERN1, OMIM:604033); IRE-1 is required for the unfolded protein response (UPR) that counteracts cellular stress induced by accumulation of unfolded proteins in the endoplasmic reticulum (ER); in response to ER stress, IRE-1 cleaves xbp-1 mRNA to produce transcriptionally active XBP-1 that positively regulates UPR gene expression in order to maintain ER homeostasis.
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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