胆固醇生物合成途径通过ERRα诱导细胞衰老

IF 4.1 Q2 GERIATRICS & GERONTOLOGY
Dorian V Ziegler, Joanna Czarnecka-Herok, Mathieu Vernier, Charlotte Scholtes, Clara Camprubi, Anda Huna, Amélie Massemin, Audrey Griveau, Christelle Machon, Jérôme Guitton, Jennifer Rieusset, Arnaud M Vigneron, Vincent Giguère, Nadine Martin, David Bernard
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引用次数: 0

摘要

细胞衰老是由各种压力诱导的细胞程序,它导致增殖稳定停止和衰老相关的分泌表型。在与年龄相关的疾病中,衰老细胞的积累参与了这些病症,并调节着健康寿命。最近有证据表明,衰老表型与细胞内代谢失调有关。然而,人们对新陈代谢平衡在调节衰老过程中的功能性贡献知之甚少。在这项工作中,我们描述了甲羟戊酸途径是如何在正常人体细胞中作为细胞衰老的正向调节因子发挥作用的,甲羟戊酸途径是一种合成代谢途径,可导致胆固醇等多异戊二烯的内源性生物合成。从机理上讲,这种由甲羟戊酸途径诱导的衰老部分是由下游胆固醇生物合成途径介导的。该途径可促进ERRα的转录活性,从而导致线粒体功能失调、ROS产生、DNA损伤和p53依赖性衰老。ERRα基因敲除小鼠因高脂肪饮食而导致的肝脏衰老的增加也证明了这些观察结果的相关性。总之,这项研究揭示了胆固醇生物合成或水平在诱导ERRα依赖性线粒体程序导致细胞衰老和相关病理改变中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cholesterol biosynthetic pathway induces cellular senescence through ERRα.

Cholesterol biosynthetic pathway induces cellular senescence through ERRα.

Cellular senescence is a cell program induced by various stresses that leads to a stable proliferation arrest and to a senescence-associated secretory phenotype. Accumulation of senescent cells during age-related diseases participates in these pathologies and regulates healthy lifespan. Recent evidences point out a global dysregulated intracellular metabolism associated to senescence phenotype. Nonetheless, the functional contribution of metabolic homeostasis in regulating senescence is barely understood. In this work, we describe how the mevalonate pathway, an anabolic pathway leading to the endogenous biosynthesis of poly-isoprenoids, such as cholesterol, acts as a positive regulator of cellular senescence in normal human cells. Mechanistically, this mevalonate pathway-induced senescence is partly mediated by the downstream cholesterol biosynthetic pathway. This pathway promotes the transcriptional activity of ERRα that could lead to dysfunctional mitochondria, ROS production, DNA damage and a p53-dependent senescence. Supporting the relevance of these observations, increase of senescence in liver due to a high-fat diet regimen is abrogated in ERRα knockout mouse. Overall, this work unravels the role of cholesterol biosynthesis or level in the induction of an ERRα-dependent mitochondrial program leading to cellular senescence and related pathological alterations.

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