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Allosteric Communication in Myosin V: From Small Conformational Changes to Large Directed Movements

机译:Myosin V中的变构通讯:从小的构象变化到大的定向运动

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摘要

The rigor to post-rigor transition in myosin, a consequence of ATP binding, plays an essential role in the Lymn–Taylor functional cycle because it results in the dissociation of the actomyosin complex after the powerstroke. On the basis of the X-ray structures of myosin V, we have developed a new normal mode superposition model for the transition path between the two states. Rigid-body motions of the various subdomains and specific residues at the subdomain interfaces are key elements in the transition. The allosteric communication between the nucleotide binding site and the U50/L50 cleft is shown to result from local changes due to ATP binding, which induce large amplitude motions that are encoded in the structure of the protein. The triggering event is the change in the interaction of switch I and the P-loop, which is stabilized by ATP binding. The motion of switch I, which is a relatively rigid element of the U50 subdomain, leads directly to a partial opening of the U50/L50 cleft; the latter is expected to weaken the binding of myosin to actin. The calculated transition path demonstrates the nature of the subdomain coupling and offers an explanation for the mutual exclusion of ATP and actin binding. The mechanism of the uncoupling of the converter from the motor head, an essential part of the transition, is elucidated. The origin of the partial untwisting of the central β-sheet in the rigor to post-rigor transition is described.
机译:ATP结合的结果是,肌球蛋白从严格到严格的过渡过程在Lymn–Taylor功能循环中起着至关重要的作用,因为它会导致中风后肌动球蛋白复合体解离。基于肌球蛋白V的X射线结构,我们为两种状态之间的过渡路径开发了一种新的正常模式叠加模型。各个子域的刚体运动和子域界面处的特定残基是过渡过程中的关键要素。核苷酸结合位点和U50 / L50裂隙之间的变构通讯显示是由于ATP结合引起的局部变化而引起的,ATP诱导了蛋白质结构中编码的大幅度运动。触发事件是开关I和P环相互作用的变化,该变化通过ATP结合得以稳定。开关I的运动是U50子域的一个相对刚性的元素,直接导致U50 / L50裂口的部分打开。后者有望减弱肌球蛋白与肌动蛋白的结合。计算的过渡路径证明了亚结构域偶联的性质,并为相互排斥的ATP和肌动蛋白结合提供了解释。阐明了转换器与电机头的解耦机制,这是过渡的重要部分。描述了从严格到严格的过渡过程中,中央β片部分解扭的起源。

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