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    Date Issued2016 (1)Author
    Bak, Daniel W. (1)
    Kingsley, Samuel F. (1)Martell, Julianne (1)Seo, Yonghak (1)Tissenbaum, Heidi A. (1)View MoreUMass Chan AffiliationDepartment of Molecular, Cell and Cancer Biology (1)UMass Metabolic Network (1)Document TypeJournal Article (1)KeywordBiochemistry (1)Cell Biology (1)Cellular and Molecular Physiology (1)Molecular Biology (1)View MoreJournalCell chemical biology (1)

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    Global Cysteine-Reactivity Profiling during Impaired Insulin/IGF-1 Signaling in C. elegans Identifies Uncharacterized Mediators of Longevity

    Martell, Julianne; Seo, Yonghak; Bak, Daniel W.; Kingsley, Samuel F.; Tissenbaum, Heidi A.; Weerapana, Eranthie (2016-08-18)
    In the nematode Caenorhabditis elegans, inactivating mutations in the insulin/IGF-1 receptor, DAF-2, result in a 2-fold increase in lifespan mediated by DAF-16, a FOXO-family transcription factor. Downstream protein activities that directly regulate longevity during impaired insulin/IGF-1 signaling (IIS) are poorly characterized. Here, we use global cysteine-reactivity profiling to identify protein activity changes during impaired IIS. Upon confirming that cysteine reactivity is a good predictor of functionality in C. elegans, we profiled cysteine-reactivity changes between daf-2 and daf-16;daf-2 mutants, and identified 40 proteins that display a > 2-fold change. Subsequent RNAi-mediated knockdown studies revealed that lbp-3 and K02D7.1 knockdown caused significant increases in lifespan and dauer formation. The proteins encoded by these two genes, LBP-3 and K02D7.1, are implicated in intracellular fatty acid transport and purine metabolism, respectively. These studies demonstrate that cysteine-reactivity profiling can be complementary to abundance-based transcriptomic and proteomic studies, serving to identify uncharacterized mediators of C. elegans longevity.
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