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Utilizing Coarse-Grained Modeling and Monte Carlo Simulations to Evaluate the Conformational Ensemble of Intrinsically Disordered Proteins and Regions

机译:利用粗粒建模和蒙特卡罗模拟来评估本机蛋白质和地区的构象整体

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In this study, we have used the coarse-grained model developed for the intrinsically disordered saliva protein (IDP) Histatin 5, on an experimental selection of monomeric IDPs, and we show that the model is generally applicable when electrostatic interactions dominate the intra-molecular interactions. Experimental and theoretically calculated small-angle X-ray scattering data are presented in the form of Kratky plots, and discussions are made with respect to polymer theory and the self-avoiding walk model. Furthermore, the impact of electrostatic interactions is shown and related to estimations of the conformational ensembles obtained from computer simulations and “Flexible-meccano.” Special attention is given to the form factor and how it is affected by the salt concentration, as well as the approximation of using the form factor obtained under physiological conditions to obtain the structure factor.
机译:在这项研究中,我们使用了对本型唾液蛋白(IDP)组织蛋白(IDP)组织蛋白5开发的粗粒模型,在单体IDP的实验选择中,我们表明,当静电相互作用主导分子中,该模型通常适用 互动。 实验和理论上计算的小角X射线散射数据以Kratky地块的形式呈现,并且关于聚合物理论和自避免步行模型进行讨论。 此外,显示静电相互作用的影响和估计从计算机模拟和“灵活 - 麦加伦”获得的构象集合的估计。 特别注意表单因素以及它如何受盐浓度的影响,以及使用在生理条件下获得的形状因子来获得结构因子的近似。

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