RRC ID 46608
Author Henis-Korenblit S, Zhang P, Hansen M, McCormick M, Lee SJ, Cary M, Kenyon C.
Title Insulin/IGF-1 signaling mutants reprogram ER stress response regulators to promote longevity.
Journal Proc Natl Acad Sci U S A
Abstract When unfolded proteins accumulate in the endoplasmic reticulum (ER), the unfolded protein response is activated. This ER stress response restores ER homeostasis by coordinating processes that decrease translation, degrade misfolded proteins, and increase the levels of ER-resident chaperones. Ribonuclease inositol-requiring protein-1 (IRE-1), an endoribonuclease that mediates unconventional splicing, and its target, the XBP-1 transcription factor, are key mediators of the unfolded protein response. In this study, we show that in Caenorhabditis elegans insulin/IGF-1 pathway mutants, IRE-1 and XBP-1 promote lifespan extension and enhance resistance to ER stress. We show that these effects are not achieved simply by increasing the level of spliced xbp-1 mRNA and expression of XBP-1's normal target genes. Instead, in insulin/IGF-1 pathway mutants, XBP-1 collaborates with DAF-16, a FOXO-transcription factor that is activated in these mutants, to enhance ER stress resistance and to activate new genes that promote longevity.
Volume 107(21)
Pages 9730-5
Published 2010-5-25
DOI 10.1073/pnas.1002575107
PII 1002575107
PMID 20460307
PMC PMC2906894
MeSH Animals Caenorhabditis elegans / metabolism* Caenorhabditis elegans Proteins / genetics Caenorhabditis elegans Proteins / metabolism Carrier Proteins / genetics Carrier Proteins / metabolism Endoplasmic Reticulum / metabolism* Insulin / metabolism Insulin-Like Growth Factor I / metabolism Longevity* Mutation* Protein Serine-Threonine Kinases / metabolism RNA, Messenger / genetics Receptor, Insulin / genetics Signal Transduction* Stress, Physiological*
IF 9.412
Times Cited 125
WOS Category BIOCHEMISTRY & MOLECULAR BIOLOGY
Resource
C.elegans tm2457