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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Protein Folding with Implicit Crowders: A Study of Conformational States Using the Wang-Landau Method
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Protein Folding with Implicit Crowders: A Study of Conformational States Using the Wang-Landau Method

机译:内隐拥挤的蛋白质折叠:使用Wang-Landau方法的构象状态研究

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In this paper we introduce the idea of the implicit crowding method to study the statistical mechanical behaviors of folding of β-sheet peptides. Using a simple bead-lattice model, we are able to consider, separately, the conformational entropy involving the bond angles along the backbone and the orientational entropy associated with the dihedral angles. We use a Ising-like model to partially account for the dihedral angle entropy and, implicitly, the hydrogen-bond formations. We also compare our results to recent experiments and find good quantitative agreement on the predicted folded fraction. On the basis of the predictions from the scaled particle theory, we investigate changes in the melting temperature of the protein, suggesting crowding enhanced stability for a variant of trpzip hairpin and a slight instability for the larger /3-sheet designed proteins.
机译:在本文中,我们介绍了隐式拥挤方法的思想,以研究β-sheet肽折叠的统计力学行为。使用一个简单的珠-格模型,我们能够分别考虑涉及沿骨架的键角的构象熵和与二面角相关的取向熵。我们使用类似于Ising的模型来部分解释二面角的熵以及氢键的形成。我们还将我们的结果与最近的实验进行比较,并在预测的折叠分数上找到了良好的定量一致性。基于缩放粒子理论的预测,我们研究了蛋白质融解温度的变化,表明拥挤增强了trpzip发夹变体的稳定性,而对较大的/ 3-sheet设计的蛋白质略有不稳定。

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