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Sirt3 Mediates Reduction of Oxidative Damage and Prevention of Age-Related Hearing Loss under Caloric Restriction

机译:在热量限制下,Sirt3介导了氧化损伤的减少和与年龄有关的听力损失的预防

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摘要

Caloric restriction (CR) extends the life span and health span of a variety of species and slows the progression of age-related hearing loss (AHL), a common age-related disorder associated with oxidative stress. Here, we report that CR reduces oxidative DNA damage in multiple tissues and prevents AHL in wild-type mice but fails to modify thesephenotypes in mice lacking the mitochondrial deacetylase Sirt3, a member of the sirtuin family. In response to CR, Sirt3 directly deacetylates and activates mitochondrial isocitrate dehydrogenase 2 (Idh2), leading to increased NADPH levels and an increased ratio of reduced-to-oxidized glutathione in mitochondria. In cultured cells, overexpression ofSirt3 and/or Idh2 increases NADPH levels and protects from oxidative stress-induced cell death. Therefore, our findings identify Sirt3 as an essential player in enhancing the mitochondrial glutathione antioxidant defense system during CR and suggest that Sirt3-dependent mitochondrial adaptations may be a central mechanism of aging retardation in mammals.
机译:热量限制(CR)延长了各种物种的寿命和健康寿命,并减慢了与年龄有关的听力丧失(AHL)的进程,后者是与氧化应激相关的常见的与年龄有关的疾病。在这里,我们报告说CR减少了多种组织中的氧化DNA损伤,并防止了野生型小鼠中的AHL,但是在缺乏线粒体脱乙酰基酶Sirt3(瑟土因家族成员)的小鼠中未能改变这些表型。响应CR,Sirt3直接脱乙酰化并激活线粒体异柠檬酸脱氢酶2(Idh2),导致线粒体中NADPH水平升高和还原型至氧化型谷胱甘肽比例增加。在培养的细胞中,Sirt3和/或Idh2的过度表达会增加NADPH水平,并防止氧化应激诱导的细胞死亡。因此,我们的发现确定Sirt3是增强CR过程中线粒体谷胱甘肽抗氧化防御系统的重要参与者,并表明Sirt3依赖的线粒体适应性可能是哺乳动物衰老延迟的重要机制。

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