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Structure of a highly conserved domain of rock1 required for shroom-mediated regulation of cell morphology

机译:岩石介导的细胞形态调控所需的rock1高度保守域的结构

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摘要

Rho-associated coiled coil containing protein kinase (Rho-kinase or Rock) is a well-defined determinant of actin organization and dynamics in most animal cells characterized to date. One of the primary effectors of Rock is non-muscle myosin II. Activation of Rock results in increased contractility of myosin II and subsequent changes in actin architecture and cell morphology. The regulation of Rock is thought to occur via autoinhibition of the kinase domain via intramolecular interactions between the N-terminus and the C-terminus of the kinase. This autoinhibited state can be relieved via proteolytic cleavage, binding of lipids to a Pleckstrin Homology domain near the C-terminus, or binding of GTP-bound RhoA to the central coiled-coil region of Rock. Recent work has identified the Shroom family of proteins as an additional regulator of Rock either at the level of cellular distribution or catalytic activity or both. The Shroom-Rock complex is conserved in most animals and is essential for the formation of the neural tube, eye, and gut in vertebrates. To address the mechanism by which Shroom and Rock interact, we have solved the structure of the coiled-coil region of Rock that binds to Shroom proteins. Consistent with other observations, the Shroom binding domain is a parallel coiled-coil dimer. Using biochemical approaches, we have identified a large patch of residues that contribute to Shrm binding. Their orientation suggests that there may be two independent Shrm binding sites on opposing faces of the coiled-coil region of Rock. Finally, we show that the binding surface is essential for Rock colocalization with Shroom and for Shroom-mediated changes in cell morphology. © 2013 Mohan et al.
机译:Rho相关的包含蛋白激酶(Rho激酶或Rock)的卷曲螺旋是迄今为止大多数动物细胞中肌动蛋白组织和动力学的明确定义。 Rock的主要效应物之一是非肌肉肌球蛋白II。 Rock的活化导致肌球蛋白II的收缩力增加,继而肌动蛋白结构和细胞形态发生变化。人们认为,Rock的调节是通过激酶N端和C端之间的分子内相互作用,通过激酶结构域的自抑制而发生的。可通过蛋白水解切割,脂质与C末端附近的Pleckstrin同源结构域的结合或GTP结合的RhoA与Rock的中央卷曲螺旋区域的结合来缓解这种自抑制状态。最近的工作已将Shroom家族的蛋白质确定为Rock的其他调节剂,无论是在细胞分布水平上还是在催化活性方面或在这两者上。 Shroom-Rock复合物在大多数动物中都是保守的,对于脊椎动物的神经管,眼睛和肠道的形成至关重要。为了解决Shroom和Rock相互作用的机制,我们解决了Rock的螺旋线圈区域与Shroom蛋白结合的结构。与其他观察结果一致,Shroom结合域是平行的卷曲螺旋二聚体。使用生化方法,我们已经确定了一大片残基,这些残基有助于Shrm结合。它们的方向表明,在岩石的卷曲线圈区域的相对面上可能有两个独立的Shrm结合位点。最后,我们表明结合表面对于与Shroom进行岩石共定位以及对于Shroom介导的细胞形态变化至关重要。 ©2013 Mohan等。

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