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心血管系统中蛋白质翻译的机械调节

Mechanical Regulation of Protein Translation in the Cardiovascular System.

作者信息

Simpson Lisa J, Reader John S, Tzima Ellie

机构信息

Division of Cardiovascular Medicine, Radcliffe Department of Medicine, Wellcome Centre for Human Genetics, University of Oxford, Oxford, United Kingdom.

出版信息

Front Cell Dev Biol. 2020 Jan 31;8:34. doi: 10.3389/fcell.2020.00034. eCollection 2020.

Abstract

The cardiovascular system can sense and adapt to changes in mechanical stimuli by remodeling the physical properties of the heart and blood vessels in order to maintain homeostasis. Imbalances in mechanical forces and/or impaired sensing are now not only implicated but are, in some cases, considered to be drivers for the development and progression of cardiovascular disease. There is now growing evidence to highlight the role of mechanical forces in the regulation of protein translation pathways. The canonical mechanism of protein synthesis typically involves transcription and translation. Protein translation occurs globally throughout the cell to maintain general function but localized protein synthesis allows for precise spatiotemporal control of protein translation. This Review will cover studies on the role of biomechanical stress -induced translational control in the heart (often in the context of physiological and pathological hypertrophy). We will also discuss the much less studied effects of mechanical forces in regulating protein translation in the vasculature. Understanding how the mechanical environment influences protein translational mechanisms in the cardiovascular system, will help to inform disease pathogenesis and potential areas of therapeutic intervention.

摘要

心血管系统能够通过重塑心脏和血管的物理特性来感知并适应机械刺激的变化,以维持体内平衡。现在,机械力失衡和/或感知受损不仅被认为与心血管疾病的发生有关,而且在某些情况下被视为心血管疾病发展和进展的驱动因素。目前越来越多的证据强调了机械力在调节蛋白质翻译途径中的作用。蛋白质合成的经典机制通常涉及转录和翻译。蛋白质翻译在整个细胞中普遍发生以维持一般功能,但局部蛋白质合成允许对蛋白质翻译进行精确的时空控制。本综述将涵盖关于生物力学应激诱导的翻译控制在心脏中的作用的研究(通常在生理和病理性肥大的背景下)。我们还将讨论机械力在调节血管系统中蛋白质翻译方面研究较少的影响。了解机械环境如何影响心血管系统中的蛋白质翻译机制,将有助于揭示疾病发病机制和潜在的治疗干预领域。

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