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Disturbed Flow-Induced Endothelial Proatherogenic Signaling Via Regulating Post-Translational Modifications and Epigenetic Events

机译:通过调节翻译后修饰和表观遗传事件,通过调节翻译后的内皮诱导的内皮电感信号

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摘要

Significance: Hemodynamic shear stress, the frictional force exerted onto the vascular endothelial cell (EC) surface, influences vascular EC functions. Atherosclerotic plaque formation in the endothelium is known to be site specific: disturbed blood flow (d-flow) formed at the lesser curvature of the aortic arch and branch points promotes plaque formation, and steady laminar flow (s-flow) at the greater curvature is atheroprotective. Recent Advances: Post-translational modifications (PTMs), including phosphorylation and SUMOylation, and epigenetic events, including DNA methylation and histone modifications, provide a new perspective on the pathogenesis of atherosclerosis, elucidating how gene expression is altered by d-flow. Activation of PKCf and p90RSK, SUMOylation of ERK5 and p53, and DNA hypermethylation are uniquely induced by d-flow, but not by s-flow. Critical Issues: Extensive cross talk has been observed among the phosphorylation, SUMOylation, acetylation, and methylation PTMs, as well as among epigenetic events along the cascade of d-flow-induced signaling, from the top (mechanosensory systems) to the bottom (epigenetic events). In addition, PKCf activation plays a role in regulating SUMOylation-related enzymes of PIAS4, p90RSK activation plays a role in regulating SUMOylation-related enzymes of Sentrin/SUMO-specific protease (SENP) 2, and DNA methyltransferase SUMOylation may play a role in d-flow signaling. Future Directions: Although possible contributions of DNA events such as histone modification and the epigenetic and cytosolic events of PTMs in d-flow signaling have become clearer, determining the interplay of each PTM and epigenetic event will provide a new paradigm to elucidate the difference between d-flow and s-flow and lead to novel therapeutic interventions to inhibit plaque formation.
机译:意义:血流动力学剪切应力,施加到血管内皮细胞(EC)表面上的摩擦力,影响血管EC功能。已知内皮细胞粥样硬化斑块形成现场特异性:在主动脉弓和分支点的较小曲率下形成的干扰血流(D系)促使斑块形成,呈牙曲线形成稳定的层流(S流动)是热的。最近的进展:翻译后修饰(PTMS)(包括磷酸化和Sub)以及包括DNA甲基化和组蛋白修饰,包括DNA甲基化和组蛋白修饰,为动脉粥样硬化的发病机制提供了一种新的观点,阐明了D系列的基因表达如何改变基因表达。 PKCF和P90RSK的激活,ERK5和P53的Sublation,DNA高甲基化由D-流动诱导,但不是通过S流动诱导。关键问题:在磷酸化,平等,乙酰化和甲基化PTM中观察到广泛的交叉谈,以及沿着D流动诱导的信号传导的级联的表观遗传事件,从顶部(机械感觉系统)到底部(表观遗传事件)。此外,PKCF活化在调节PIAS4的Sumoylation相关酶中起作用作用,P90RSK活化在调节哨兵/相符蛋白酶(SENP)2的雄性相关酶中起作用,并且DNA甲基转移酶Sumoylation可能在D中发挥作用 - 流信令。未来的方向:尽管DNA事件的可能贡献,例如D-Flow信令中PTMS的PTMS的表观遗传和细胞溶质事件已经变得更加清晰,但确定每个PTM和表观遗传事件的相互作用将提供一种新的范例来阐明D之间的差异 - 流和S流动并导致新的治疗性干预措施抑制斑块形成。

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  • 来源
    《Antioxidants and redox signalling》 |2016年第7期|共16页
  • 作者单位

    Univ Texas MD Anderson Canc Ctr Div Internal Med Dept Cardiol Houston TX 77030 USA;

    Univ Rochester Med Ctr Aab Cardiovasc Res Inst Dept Med Rochester NY 14642 USA;

    Univ Texas MD Anderson Canc Ctr Div Internal Med Dept Cardiol Houston TX 77030 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础医学;
  • 关键词

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