锡尔图因
细胞生物学
乙酰化
生物
突变体
心肌病
细胞凋亡
氧化应激
SIRT2
癌症研究
SIRT3
组蛋白
西妥因1
基因
化学
遗传学
内分泌学
内科学
下调和上调
医学
心力衰竭
作者
Olesya Vakhrusheva,Christian Smolka,Praveen Gajawada,Sawa Kostin,Thomas Boettger,Thomas Kubin,Thomas Braun,Eva Bober
出处
期刊:Circulation Research
[Lippincott Williams & Wilkins]
日期:2008-02-01
卷期号:102 (6): 703-710
被引量:612
标识
DOI:10.1161/circresaha.107.164558
摘要
Sirt7 is a member of the mammalian sirtuin family consisting of 7 genes, Sirt1 to Sirt7, which all share a homology to the founding family member, the yeast Sir2 gene. Most sirtuins are supposed to act as histone/protein deacetylases, which use oxidized NAD in a sirtuin-specific, 2-step deacetylation reaction. To begin to decipher the biological role of Sirt7, we inactivated the Sirt7 gene in mice. Sirt7-deficient animals undergo a reduction in mean and maximum lifespans and develop heart hypertrophy and inflammatory cardiomyopathy. Sirt7 mutant hearts are also characterized by an extensive fibrosis, which leads to a 3-fold increase in collagen III accumulation. We found that Sirt7 interacts with p53 and efficiently deacetylates p53 in vitro, which corresponds to hyperacetylation of p53 in vivo and an increased rate of apoptosis in the myocardium of mutant mice. Sirt7-deficient primary cardiomyocytes show a ≈200% increase in basal apoptosis and a significantly diminished resistance to oxidative and genotoxic stress suggesting a critical role of Sirt7 in the regulation of stress responses and cell death in the heart. We propose that enhanced activation of p53 by lack of Sirt7-mediated deacetylation contributes to the heart phenotype of Sirt7 mutant mice.
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