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秀丽隐杆线虫 SIRT6/7 同源物 SIR-2.4 在应激过程中促进 DAF-16 的重定位和功能。

C. elegans SIRT6/7 homolog SIR-2.4 promotes DAF-16 relocalization and function during stress.

机构信息

Department of Molecular and Integrative Physiology, University of Michigan, Ann Arbor, Michigan, United States of America.

出版信息

PLoS Genet. 2012 Sep;8(9):e1002948. doi: 10.1371/journal.pgen.1002948. Epub 2012 Sep 13.

Abstract

FoxO transcription factors and sirtuin family deacetylases regulate diverse biological processes, including stress responses and longevity. Here we show that the Caenorhabditis elegans sirtuin SIR-2.4--homolog of mammalian SIRT6 and SIRT7 proteins--promotes DAF-16-dependent transcription and stress-induced DAF-16 nuclear localization. SIR-2.4 is required for resistance to multiple stressors: heat shock, oxidative insult, and proteotoxicity. By contrast, SIR-2.4 is largely dispensable for DAF-16 nuclear localization and function in response to reduced insulin/IGF-1-like signaling. Although acetylation is known to regulate localization and activity of mammalian FoxO proteins, this modification has not been previously described on DAF-16. We find that DAF-16 is hyperacetylated in sir-2.4 mutants. Conversely, DAF-16 is acetylated by the acetyltransferase CBP-1, and DAF-16 is hypoacetylated and constitutively nuclear in response to cbp-1 inhibition. Surprisingly, a SIR-2.4 catalytic mutant efficiently rescues the DAF-16 localization defect in sir-2.4 null animals. Acetylation of DAF-16 by CBP-1 in vitro is inhibited by either wild-type or mutant SIR-2.4, suggesting that SIR-2.4 regulates DAF-16 acetylation indirectly, by preventing CBP-1-mediated acetylation under stress conditions. Taken together, our results identify SIR-2.4 as a critical regulator of DAF-16 specifically in the context of stress responses. Furthermore, they reveal a novel role for acetylation, modulated by the antagonistic activities of CBP-1 and SIR-2.4, in modulating DAF-16 localization and function.

摘要

FoxO 转录因子和 Sirtuin 家族去乙酰化酶调节多种生物学过程,包括应激反应和长寿。在这里,我们表明,秀丽隐杆线虫的 Sirtuin SIR-2.4——哺乳动物 SIRT6 和 SIRT7 蛋白的同源物——促进 DAF-16 依赖性转录和应激诱导的 DAF-16 核定位。SIR-2.4 是抵抗多种应激源所必需的:热休克、氧化损伤和蛋白毒性。相比之下,SIR-2.4 在很大程度上对于 DAF-16 核定位和响应于减少的胰岛素/IGF-1 样信号的功能是可有可无的。尽管已知乙酰化调节哺乳动物 FoxO 蛋白的定位和活性,但这种修饰以前尚未在 DAF-16 上描述过。我们发现 SIR-2.4 突变体中的 DAF-16 过度乙酰化。相反,乙酰转移酶 CBP-1 乙酰化 DAF-16,并且 CBP-1 抑制时 DAF-16 乙酰化减少并持续核定位。令人惊讶的是,SIR-2.4 催化突变体有效地挽救了 sir-2.4 缺失动物中的 DAF-16 定位缺陷。CBP-1 在体外对 DAF-16 的乙酰化作用被野生型或突变型 SIR-2.4 抑制,这表明 SIR-2.4 通过在应激条件下阻止 CBP-1 介导的乙酰化来间接调节 DAF-16 的乙酰化。总之,我们的结果将 SIR-2.4 确定为 DAF-16 在应激反应背景下的关键调节剂。此外,它们揭示了乙酰化的新作用,该作用受 CBP-1 和 SIR-2.4 的拮抗活性的调节,在调节 DAF-16 的定位和功能方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48ef/3441721/ee328e2b733a/pgen.1002948.g001.jpg

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