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Regulation of cardiovascular connexins by mechanical forces and junctions

机译:通过机械力和关节调节心血管连接蛋白

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Connexins form a family of transmembrane proteins that consists of 20 members in humans and 21 members in mice. Six connexins assemble into a connexon that can function as a hemichannel or connexon that can dock to a connexon expressed by a neighbouring cell, thereby forming a gap junction channel. Such intercellular channels synchronize responses in multicellular organisms through direct exchange of ions, small metabolites, and other second messenger molecules between the cytoplasms of adjacent cells. Multiple connexins are expressed in the cardiovascular system. These connexins not only experience the different biomechanical forces within this system, but may also act as effector proteins in co-ordinating responses within groups of cells towards these forces. This review discusses recent insights regarding regulation of cardiovascular connexins by mechanical forces and junctions. It specifically addresses effects of (i) shear stress on endothelial connexins, (ii) hypertension on vascular connexins, and (iii) changes in afterload and the composition of myocardial mechanical junctions on cardiac connexins.
机译:连接蛋白形成跨膜蛋白家族,其由人类的20个成员和小鼠的21个成员组成。六个连接蛋白组装成可充当半通道或连接蛋白的连接蛋白,该半通道或连接蛋白可与邻近细胞表达的连接蛋白对接,从而形成间隙连接通道。这种细胞间通道通过在相邻细胞的细胞质之间直接交换离子,小代谢物和其他第二信使分子来同步多细胞生物体中的反应。多种连接蛋白在心血管系统中表达。这些连接蛋白不仅在该系统中经受不同的生物力学作用力,而且还可以作为效应蛋白在协调细胞群中对这些作用力的反应中。这篇综述讨论了有关通过机械力和连接点调节心血管连接蛋白的最新见解。它专门解决(i)剪应力对内皮连接蛋白的影响,(ii)高血压对血管连接蛋白的影响,以及(iii)心脏连接蛋白的后负荷变化和心肌机械连接的组成。

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