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通过简单的计算方法绘制钙调蛋白中中央α螺旋连接子介导的构象转变途径图。

Mapping central α-helix linker mediated conformational transition pathway of calmodulin via simple computational approach.

机构信息

Drug Discovery and Design Center, Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences , 555 Zuchongzhi Road, Shanghai 201203, China.

出版信息

J Phys Chem B. 2014 Aug 14;118(32):9677-85. doi: 10.1021/jp507186h. Epub 2014 Aug 5.

Abstract

The effects of intrinsic structural flexibility of calmodulin protein on the mechanism of its allosteric conformational transition are investigated in this article. Using a novel in silico approach, the conformational transition pathways of intact calmodulin as well as the isolated N- and C- terminal domains are identified and energetically characterized. It is observed that the central α-helix linker amplifies the structural flexibility of intact Ca(2+)-free calmodulin, which might facilitate the transition of the two domains. As a result, the global conformational transition of Ca(2+)-free calmodulin is initiated by the barrierless transition of two domains and proceeds through the barrier associated unwinding and bending of the central α-helix linker. The binding of Ca(2+) cations to calmodulin further increases the structural flexibility of the C-terminal domain and results in a downhill transition pathway of which all regions transit in a concerted manner. On the other hand, the separation of the N- and C-terminal domains from calmodulin protein loses the mediating function of central α-helix linker, leading to more difficult conformational transitions of both domains. The present study provides novel insights into the correlation of the integrity of protein, the structural flexibility, and the mechanism of conformational transition of proteinlike calmodulin.

摘要

本文研究了钙调蛋白蛋白固有结构柔性对其变构构象转变机制的影响。采用一种新的计算方法,确定并能量特征化了完整钙调蛋白以及分离的 N-和 C-末端结构域的构象转变途径。结果表明,中心α-螺旋连接子放大了游离 Ca2+-钙调蛋白的结构柔性,这可能有助于两个结构域的转变。因此,游离 Ca2+-钙调蛋白的全局构象转变是由两个结构域的无势垒转变启动的,并通过中心α-螺旋连接子的相关解旋和弯曲来进行。Ca2+ 阳离子与钙调蛋白的结合进一步增加了 C-末端结构域的结构柔性,并导致一个下坡的转变途径,其中所有区域都以协调的方式转变。另一方面,钙调蛋白蛋白的 N-和 C-末端结构域的分离失去了中心α-螺旋连接子的介导功能,导致两个结构域的构象转变更加困难。本研究为类似钙调蛋白蛋白的完整性、结构柔性和构象转变机制之间的相关性提供了新的见解。

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