Sirt1 modulates premature senescence-like phenotype in human endothelial cells

衰老 西妥因1 基因沉默 细胞生物学 HDAC3型 乙酰化 早衰 伊诺斯 生物 氧化应激 小干扰RNA 下调和上调 脐静脉 化学 转染 生物化学 一氧化氮合酶 基因 体外 组蛋白脱乙酰基酶 遗传学 酶 组蛋白
作者
Hidetaka Ota,Masahiro Akishita,Masato Eto,Katsuya Iijima,Masao Kaneki,Yasuyoshi Ouchi
出处
期刊:Journal of Molecular and Cellular Cardiology [Elsevier BV]
卷期号:43 (5): 571-579 被引量:412
标识
DOI:10.1016/j.yjmcc.2007.08.008
摘要

Yeast Sir2 plays critical roles in gene silencing, stress resistance and longevity. Mammalian Sirt1 NAD+-dependent protein deacetylase, the closest homolog of Sir2, regulates cell cycle, cellular senescence, apoptosis and metabolism, by functional interactions with a number of biological molecules such as p53. To investigate a role of Sirt1 in endothelial dysfunction and premature senescence, we examined the effects of Sirt1 inhibition in human umbilical vein endothelial cells (HUVEC). Sirt1 inhibition by sirtinol, which is a 2-hydroxy-1-napthaldehyde derivative, or siRNA for Sirt1-induced premature senescence-like phenotype, as judged by increased senescence-associated β-galactosidase (SA-β-gal) activity, sustained growth arrest and enlarged and flattened cell morphology at 10 days after the treatment. Sixty-four percent of sirtinol (60 μmol/L)-treated HUVEC was SA-β-gal-positive, whereas only 17% of vehicle-treated cells were positive. Sirt1 inhibition by sirtinol or Sirt1 siRNA increased PAI-1 expression and decreased both protein expression and activity of eNOS. Treatment with sirtinol or Sirt1 siRNA increased acetylation of p53, while p53 expression was unaltered. Impaired epidermal growth factor-induced activation of mitogen-activated protein kinases was associated with Sirt1 inhibition-induced senescence-like growth arrest. Conversely, overexpression of Sirt1 prevented hydrogen peroxide-induced SA-β-gal activity, morphological changes and deranged expression of PAI-1 and eNOS. These results showed that Sirt1 inhibition increased p53 acetylation and induced premature senescence-like phenotype in parallel with increased PAI-1 and decreased eNOS expression. Our data suggest that Sirt1 may exert protective effects against endothelial dysfunction by preventing stress-induced premature senescence and deranged expression of PAI-1 and eNOS.
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