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Prohibitin depletion extends lifespan of a TORC2/SGK‐1 mutant through autophagy and the mitochondrial UPR
Authors:Patricia de la Cruz&#x  Ruiz,Blanca Hernando&#x  Rodrí  guez,Mercedes M. P  rez&#x  Jim  nez,Marí  a Jesú  s Rodrí  guez&#x  Palero,Manuel D. Martí  nez&#x  Bueno,Antoni Pla,Roxani Gatsi,Marta Artal&#x  Sanz
Affiliation:1. Andalusian Centre for Developmental Biology, Consejo Superior de Investigaciones Científicas/Junta de Andalucía/Universidad Pablo de Olavide, Seville Spain ; 2. Department of Molecular Biology and Biochemical Engineering, Universidad Pablo de Olavide, Seville Spain
Abstract:Mitochondrial prohibitins (PHB) are highly conserved proteins with a peculiar effect on lifespan. While PHB depletion shortens lifespan of wild‐type animals, it enhances longevity of a plethora of metabolically compromised mutants, including target of rapamycin complex 2 (TORC2) mutants sgk1 and rict1. Here, we show that sgk1 mutants have impaired mitochondrial homeostasis, lipogenesis and yolk formation, plausibly due to alterations in membrane lipid and sterol homeostasis. Remarkably, all these features are suppressed by PHB depletion. Our analysis shows the requirement of SRBP1/SBP‐1 for the lifespan extension of sgk1 mutants and the further extension conferred by PHB depletion. Moreover, although the mitochondrial unfolded protein response (UPRmt) and autophagy are induced in sgk1 mutants and upon PHB depletion, they are dispensable for lifespan. However, the enhanced longevity caused by PHB depletion in sgk1 mutants requires both, the UPRmt and autophagy, but not mitophagy. We hypothesize that UPRmt induction upon PHB depletion extends lifespan of sgk1 mutants through autophagy and probably modulation of lipid metabolism.
Keywords:autophagy, lipogenesis, mitochondria, prohibitin, SGK‐  1, UPRmt
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