RRC ID 51431
Author Chang JT, Kumsta C, Hellman AB, Adams LM, Hansen M.
Title Spatiotemporal regulation of autophagy during Caenorhabditis elegans aging.
Journal Elife
Abstract Autophagy has been linked to longevity in many species, but the underlying mechanisms are unclear. Using a GFP-tagged and a new tandem-tagged Atg8/LGG-1 reporter, we quantified autophagic vesicles and performed autophagic flux assays in multiple tissues of wild-type Caenorhabditis elegans and long-lived daf-2/insulin/IGF-1 and glp-1/Notch mutants throughout adulthood. Our data are consistent with an age-related decline in autophagic activity in the intestine, body-wall muscle, pharynx, and neurons of wild-type animals. In contrast, daf-2 and glp-1 mutants displayed unique age- and tissue-specific changes in autophagic activity, indicating that the two longevity paradigms have distinct effects on autophagy during aging. Although autophagy appeared active in the intestine of both long-lived mutants, inhibition of intestinal autophagy significantly abrogated lifespan extension only in glp-1 mutants. Collectively, our data suggest that autophagic activity normally decreases with age in C. elegans, whereas daf-2 and glp-1 long-lived mutants regulate autophagy in distinct spatiotemporal-specific manners to extend lifespan.
Volume 6
Published 2017-7-4
DOI 10.7554/eLife.18459
PII e18459
PMID 28675140
PMC PMC5496740
MeSH Aging* Animal Structures / chemistry Animals Autophagosomes / metabolism Autophagy* Caenorhabditis elegans / cytology Caenorhabditis elegans / physiology* Caenorhabditis elegans Proteins / analysis Microtubule-Associated Proteins / analysis Models, Animal Spatio-Temporal Analysis
IF 7.08
Times Cited 53
Resource
C.elegans tm3489