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力学转导与内皮糖萼:与膜和细胞骨架蛋白的相互作用以传递力。

Mechanotransduction and the endothelial glycocalyx: Interactions with membrane and cytoskeletal proteins to transduce force.

机构信息

Gastroenterohepatology Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.

Department of Kinesiology and Applied Physiology, College of Health Sciences, University of Delaware, Newark, DE, United States.

出版信息

Curr Top Membr. 2023;91:43-60. doi: 10.1016/bs.ctm.2023.02.003. Epub 2023 Mar 10.

Abstract

The endothelial glycocalyx is an extracellular matrix that coats the endothelium and extends into the lumen of blood vessels, acting as a barrier between the vascular wall and blood flowing through the vessel. This positioning of the glycocalyx permits a variety of its constituents, including the major endothelial proteoglycans glypican-1 and syndecan-1, as well as the major glycosaminoglycans heparan sulfate and hyaluronic acid, to contribute to the processes of mechanosensation and subsequent mechanotransduction following such stimuli as elevated shear stress. To coordinate the vast array of processes that occur in response to physical force, the glycocalyx interacts with a plethora of membrane and cytoskeletal proteins to carry out specific signaling pathways resulting in a variety of responses of endothelial cells and, ultimately, blood vessels to mechanical force. This review focuses on proposed glycocalyx-protein relationships whereby the endothelial glycocalyx interacts with a variety of membrane and cytoskeletal proteins to transduce force into a myriad of chemical signaling pathways. The established and proposed interactions at the molecular level are discussed in context of how the glycocalyx regulates membrane/cytoskeletal protein function in the many processes of endothelial mechanotransduction.

摘要

内皮糖萼是覆盖在内皮细胞并延伸至血管腔的细胞外基质,充当血管壁和流经血管的血液之间的屏障。糖萼的这种定位允许其各种组成部分,包括主要的内皮蛋白聚糖聚糖蛋白 1 和 syndecan-1 以及主要的糖胺聚糖肝素硫酸盐和透明质酸,有助于机械感觉和随后的机械转导过程,例如在升高的剪切力等刺激下。为了协调对物理力发生的大量过程,糖萼与大量膜和细胞骨架蛋白相互作用以执行特定的信号通路,从而导致内皮细胞和最终血管对机械力产生各种反应。本综述重点介绍了糖萼-蛋白相互作用的提议,即内皮糖萼与各种膜和细胞骨架蛋白相互作用,将力转导为多种化学信号通路。在分子水平上建立和提出的相互作用是在糖萼如何调节内皮细胞机械转导的许多过程中的膜/细胞骨架蛋白功能的背景下讨论的。

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