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Preferential binding effects on protein structure and dynamics revealed by coarse-grained Monte Carlo simulation

机译:粗粒蒙特卡罗仿真揭示了对蛋白质结构和动力学的优惠对效应

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摘要

The effect of preferential binding of solute molecules within an aqueous solution on the structure and dynamics of the histone H3.1 protein is examined by a coarse-grained Monte Carlo simulation. The knowledge-based residue-residue and hydropathy-index-based residue-solvent interactions are used as input to analyze a number of local and global physical quantities as a function of the residue-solvent interaction strength (f). Results from simulations that treat the aqueous solution as a homogeneous effective solvent medium are compared to when positional fluctuations of the solute molecules are explicitly considered. While the radius of gyration (R-g) of the protein exhibits a non-monotonic dependence on solvent interaction over a wide range of f within an effective medium, an abrupt collapse in R-g occurs in a narrow range of f when solute molecules rapidly bind to a preferential set of sites on the protein. The structure factor S(q) of the protein with wave vector (q) becomes oscillatory in the collapsed state, which reflects segmental correlations caused by spatial fluctuations in soluteprotein binding. Spatial fluctuations in solute binding also modify the effective dimension (D) of the protein in fibrous (D similar to 1.3), random-coil (D similar to 1.75), and globular (D similar to 3) conformational ensembles as the interaction strength increases, which differ from an effective medium with respect to the magnitude of D and the length scale. Published by AIP Publishing.
机译:的优先的结构和组蛋白H3.1蛋白的动力学的水溶液中溶质分子的结合的影响是由粗粒蒙特卡罗模拟检查。在基于亲水指数基于知识的残基 - 残基和残基 - 溶剂相互作用被用作输入来分析数局部和全局的物理量作为的残基 - 溶剂相互作用强度(F)的函数。从该处理水溶液作为均匀有效的溶剂介质模拟的结果进行比较,当溶质分子的位置波动被明确地考虑到。而回转半径(Rg)之间的蛋白质表现出在溶剂相互作用在宽范围F的有效介质内的非单调的依赖,在RG的突然崩溃发生在一个狭窄的范围F的当溶质分子快速结合到一个特惠组蛋白上的网站。用波矢量(q)中的蛋白质的结构因子的S(q)成为在收缩状态,这反映了在结合soluteprotein引起空间波动节段性相关性振荡。在溶质空间波动结合也修改该蛋白质的有效尺寸(d)在纤维(d类似于1.3),随机线圈(d类似于1.75),和球状(d类似于3)构象合奏作为相互作用强度增加,这从有效介质不同相对于d的幅度和长度尺度。通过AIP发布发布。

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