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Made to measure - keeping Rho kinase at a distance

机译:量身定制-使Rho激酶保持一定距离

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摘要

The Rho-associated coiled-coil containing kinases (ROCK) were first identified as effectors of the small GTPase RhoA, hence their nomenclature. Since their discovery, two decades ago, scientists have sought to unravel the structure, regulation, and function of these essential kinases. During that time, a consensus model has formed, in which ROCK activity is regulated via both Rho-dependent and independent mechanisms. However, recent findings have raised significant questions regarding this model. In their recent publication in Nature Communications, Truebestein and colleagues present the structure of a full-length Rho kinase for the first time. In contrast to previous reports, the authors could find no evidence for autoinhibition, RhoA binding, or regulation of kinase activity by phosphorylation. Instead, they propose that ROCK functions as a molecular ruler, in which the central coiled-coil bridges the membrane-binding regulatory domains to the kinase domains at a fixed distance from the plasma membrane. Here, we explore the consequences of the new findings, re-examine old data in the context of this model, and emphasize outstanding questions in the field.
机译:Rho相关的包含螺旋线圈的激酶(ROCK)首先被确定为小GTPase RhoA的效应子,因此命名为RhoA。自从二十年前的发现以来,科学家们一直在试图弄清这些必需激酶的结构,调控和功能。在此期间,形成了一个共识模型,其中ROCK活性通过Rho依赖和独立机制进行调控。但是,最近的发现提出了有关该模型的重大问题。在他们最近发表于《自然通讯》上的文章中,Truebestein及其同事首次提出了全长Rho激酶的结构。与以前的报告相反,作者找不到通过磷酸化作用进行自抑制,RhoA结合或激酶活性调节的证据。相反,他们提出了ROCK起分子尺的作用,其中中央盘绕线圈将膜结合调节域桥接到距质膜固定距离的激酶域。在这里,我们探索新发现的结果,在此模型的背景下重新检查旧数据,并强调该领域中的突出问题。

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