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Sir2 阻断了寿命的极度延长。

Sir2 blocks extreme life-span extension.

作者信息

Fabrizio Paola, Gattazzo Cristina, Battistella Luisa, Wei Min, Cheng Chao, McGrew Kristen, Longo Valter D

机构信息

Andrus Gerontology Center and Department of Biological Sciences, University of Southern California, Los Angeles, California 90089, USA.

出版信息

Cell. 2005 Nov 18;123(4):655-67. doi: 10.1016/j.cell.2005.08.042.

Abstract

Sir2 is a conserved deacetylase that modulates life span in yeast, worms, and flies and stress response in mammals. In yeast, Sir2 is required for maintaining replicative life span, and increasing Sir2 dosage can delay replicative aging. We address the role of Sir2 in regulating chronological life span in yeast. Lack of Sir2 along with calorie restriction and/or mutations in the yeast AKT homolog, Sch9, or Ras pathways causes a dramatic chronological life-span extension. Inactivation of Sir2 causes uptake and catabolism of ethanol and upregulation of many stress-resistance and sporulation genes. These changes while sufficient to extend chronological life span in wild-type yeast require severe calorie restriction or additional mutations to extend life span of sir2Delta mutants. Our results demonstrate that effects of SIR2 on chronological life span are opposite to replicatve life span and suggest that the relevant activities of Sir2-like deacetylases may also be complex in higher eukaryotes.

摘要

Sir2是一种保守的去乙酰化酶,可调节酵母、蠕虫和果蝇的寿命以及哺乳动物的应激反应。在酵母中,维持复制寿命需要Sir2,增加Sir2的剂量可以延缓复制衰老。我们研究了Sir2在调节酵母时序寿命中的作用。缺乏Sir2以及卡路里限制和/或酵母AKT同源物Sch9或Ras途径中的突变会导致显著的时序寿命延长。Sir2的失活会导致乙醇的摄取和分解代谢以及许多抗应激和孢子形成基因的上调。这些变化虽然足以延长野生型酵母的时序寿命,但需要严格的卡路里限制或额外的突变才能延长sir2Delta突变体的寿命。我们的结果表明,SIR2对时序寿命的影响与复制寿命相反,并表明Sir2样去乙酰化酶在高等真核生物中的相关活性也可能很复杂。

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