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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Coarse-grained modeling of the intrinsically disordered protein Histatin 5 in solution: Monte Carlo simulations in combination with SAXS
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Coarse-grained modeling of the intrinsically disordered protein Histatin 5 in solution: Monte Carlo simulations in combination with SAXS

机译:溶液中固有无序蛋白Histatin 5的粗粒度建模:结合SAXS的Monte Carlo模拟

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摘要

Monte Carlo simulations and coarse-grained modeling have been used to analyze Histatin 5, an unstructured short cationic salivary peptide known to have anticandidical properties. The calculated scattering functions have been compared with intensity curves and the distance distribution function P(r) obtained from small angle X-ray scattering (SAXS), at both high and low salt concentrations. The aim was to achieve a molecular understanding and a physico-chemical insight of the obtained SAXS results and to gain information of the conformational changes of Histatin 5 due to altering salt content, charge distribution, and net charge. From a modeling perspective, the accuracy of the electrostatic interactions are of special interest. The used coarse-grained model was based on the primitive model in which charged hard spheres differing in charge and in size represent the ionic particles, and the solvent only enters the model through its relative permittivity. The Hamiltonian of the model comprises three different contributions: (i) excluded volumes, (ii) electrostatic, and (iii) van der Waals interactions. Even though the model can be considered as gross omitting all atomistic details, a great correspondence is obtained with the experimental results. (C) 2016 Wiley Periodicals, Inc.
机译:蒙特卡罗模拟和粗粒度模型已用于分析组蛋白5,组蛋白5,一种已知具有抗癫痫性质的无结构短阳离子唾液肽。计算的散射函数已与强度曲线和在高盐浓度和低盐浓度下从小角度X射线散射(SAXS)获得的距离分布函数P(r)进行了比较。目的是获得获得的SAXS结果的分子理解和物理化学见解,并获得因盐含量,电荷分布和净电荷变化而导致的Histatin 5构象变化的信息。从建模的角度来看,静电相互作用的准确性特别重要。所使用的粗粒度模型基于原始模型,在该模型中,电荷和大小不同的带电硬球代表离子粒子,溶剂仅通过其相对介电常数进入模型。该模型的哈密顿量包括三个不同的贡献:(i)排除的体积,(ii)静电,和(iii)范德华相互作用。即使可以认为该模型完全省略了所有原子细节,但仍与实验结果取得了很好的对应。 (C)2016威利期刊公司

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