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Optimization of Molecular Dynamics Simulations of c-MYC1-88—An Intrinsically Disordered System

机译:C-MYC1-88 - 内部无序系统分子动力学模拟的优化

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摘要

Many of the proteins involved in key cellular regulatory events contain extensive intrinsically disordered regions that are not readily amenable to conventional structure/function dissection. The oncoprotein c-MYC plays a key role in controlling cell proliferation and apoptosis and more than 70% of the primary sequence is disordered. Computational approaches that shed light on the range of secondary and tertiary structural conformations therefore provide the only realistic chance to study such proteins. Here, we describe the results of several tests of force fields and water models employed in molecular dynamics simulations for the N-terminal 88 amino acids of c-MYC. Comparisons of the simulation data with experimental secondary structure assignments obtained by NMR establish a particular implicit solvation approach as highly congruent. The results provide insights into the structural dynamics of c-MYC , which will be useful for guiding future experimental approaches. The protocols for trajectory analysis described here will be applicable for the analysis of a variety of computational simulations of intrinsically disordered proteins.
机译:关键细胞调节事件中涉及的许多蛋白质含有广泛的本质上无序区域,其不容易均可用于常规结构/功能夹层。癌蛋白c-myc在控制细胞增殖和细胞凋亡中起关键作用,并且超过70%的主要序列是混乱的。因此,在二级和三级结构构象范围内的计算方法提供了研究这种蛋白质的唯一现实的机会。在这里,我们描述了用于C-Myc的N末端88氨基酸的分子动力学模拟中使用的力场和水模型的几次试验结果。通过NMR获得的实验二级结构分配的模拟数据的比较建立了特定的隐式求解方法,尽可能高。结果提供了C-MYC结构动态的见解,这将有助于指导未来的实验方法。这里描述的轨迹分析的方案适用于分析本质无序蛋白的各种计算模拟。

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