ملخص
The burden of protein misfolding is believed to contribute to aging. However, the links between adaptations to conditions associated with protein misfolding and resistance to the time-dependent attrition of cellular function remain poorly understood. We report that worms lacking aip-1, a homologue of mammalian AIRAP (arsenic-inducible proteasomal 19S regulatory particle-associated protein), are not only impaired in their ability to resist exposure to arsenite but also exhibit shortened lifespan and hypersensitivity to misfolding-prone proteins under normal laboratory conditions. Mammals have a second, constitutively expressed AIRAP-like gene (AIRAPL) that also encodes a proteasome-interacting protein, which shares with AIRAP the property of enhancing peptide accessibility to the proteasome's active site. Genetic rescue experiments suggest that features common to the constitutively expressed worm AIP-1 and mammalian AIRAPL (but missing in the smaller, arsenite-inducible AIRAP) are important to lifespan extension. In worms, a single AIRAP-related protein links proteasomal adaptation to environmental stress with resistance to both proteotoxic insults and maintenance of animal life span under normal conditions.
اللغة الأصلية | الإنجليزيّة |
---|---|
الصفحات (من إلى) | 7094-7099 |
عدد الصفحات | 6 |
دورية | Proceedings of the National Academy of Sciences of the United States of America |
مستوى الصوت | 105 |
رقم الإصدار | 19 |
المعرِّفات الرقمية للأشياء | |
حالة النشر | نُشِر - 13 مايو 2008 |
منشور خارجيًا | نعم |