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Bending of the calmodulin central helix: a theoretical study.

机译:钙调蛋白中央螺旋的弯曲:理论研究。

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摘要

The crystal structure of calcium-calmodulin (CaM) reveals a protein with a typical dumbbell structure. Various spectroscopic studies have suggested that the central linker region of CaM, which is alpha-helical in the crystal structure, is flexible in solution. In particular, NMR studies have indicated the presence of a flexible backbone between residues Lys 77 and Asp 80. This flexibility is related directly to the function of the protein because it enables the N- and C-terminal domains of the protein to move toward each other and bind to the CaM-binding domain of a target protein. We have investigated the flexibility of the CaM central helix by a variety of computational techniques: molecular dynamics (MD) simulations, normal mode analysis (NMA), and essential dynamics (ED) analysis. Our MD results reproduce the experimentally determined location of the bend in a simulation of only the CaM central helix, indicating that the bending point is an intrinsic property of the alpha-helix, for which the remainder of the protein is not important. Interestingly, the modes found by the ED analysis of the MD trajectory are very similar to the lowest frequency modes from the NM analysis and to modes found by an ED analysis of different structures in a set of NMR structures. Electrostatic interactions involving residues Arg 74 and Asp 80 seem to be important for these bending motions and unfolding, which is in line with pH-dependent NMR and CD studies.
机译:钙钙调蛋白(CaM)的晶体结构揭示了具有典型哑铃结构的蛋白质。各种光谱研究表明,CaM的中心连接区(在晶体结构中呈α螺旋形)在溶液中具有柔性。尤其是,NMR研究表明,残基Lys 77和Asp 80之间存在柔性主链。这种柔性与蛋白质的功能直接相关,因为它使蛋白质的N和C末端结构域向各个方向移动并与靶蛋白的CaM结合结构域结合。我们已经通过多种计算技术研究了CaM中心螺旋的灵活性:分子动力学(MD)模拟,正态模式分析(NMA)和本质动力学(ED)分析。我们的MD结果仅在CaM中心螺旋的模拟中再现了实验确定的弯曲位置,这表明弯曲点是α螺旋的固有属性,因此蛋白质的其余部分并不重要。有趣的是,通过MD轨迹的ED分析发现的模式与来自NM分析的最低频率模式以及通过ED分析在一组NMR结构中的不同结构的模式非常相似。涉及残基Arg 74和Asp 80的静电相互作用对于这些弯曲运动和展开似乎很重要,这与pH依赖的NMR和CD研究一致。

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