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用于肽链构象动力学的混合粒子-场模型

Hybrid Particle-Field Model for Conformational Dynamics of Peptide Chains.

作者信息

Bore Sigbjørn Løland, Milano Giuseppe, Cascella Michele

机构信息

Department of Chemistry and Hylleraas Centre for Quantum Molecular Sciences, University of Oslo , P.O. Box 1033 Blindern, 0315 Oslo, Norway.

Department of Organic Materials Science, University of Yamagata , 4-3-16 Jonan Yonezawa, Yamagata-ken 992-8510, Japan.

出版信息

J Chem Theory Comput. 2018 Feb 13;14(2):1120-1130. doi: 10.1021/acs.jctc.7b01160. Epub 2018 Jan 29.

Abstract

We propose the first model of a polypeptide chain based on a hybrid-particle field approach. The intramolecular potential is built on a two-bead coarse grain mapping for each amino acid. We employ a combined potential for the bending and the torsional degrees of freedom that ensures the stabilization of secondary structure elements in the conformational space of the polypeptide. The electrostatic dipoles associated with the peptide bonds of the main chain are reconstructed by a topological procedure. The intermolecular interactions comprising both the solute and the explicit solvent are treated by a density functional-based mean-field potential. Molecular dynamics simulations on a series of test systems show how the model here introduced is able to capture all the main features of polypeptides. In particular, homopolymers of different lengths yield a complex folding phase diagram, covering from the collapsed to swollen state. Moreover, simulations on models of a four-helix bundle and of an alpha + beta peptide evidence how the collapse of the hydrophobic core drives the appearance of both folded motifs and the stabilization of tertiary or quaternary assemblies. Finally, the polypeptide model is able to structurally respond to the environmental changes caused by the presence of a lipid bilayer.

摘要

我们基于混合粒子场方法提出了首个多肽链模型。分子内势能基于每个氨基酸的双珠粗粒化映射构建。我们对弯曲和扭转自由度采用了组合势能,以确保多肽构象空间中二级结构元件的稳定。通过拓扑程序重建与主链肽键相关的静电偶极子。包括溶质和显式溶剂的分子间相互作用由基于密度泛函的平均场势能处理。对一系列测试系统的分子动力学模拟表明,这里引入的模型能够捕捉多肽的所有主要特征。特别是,不同长度的均聚物产生了一个复杂的折叠相图,涵盖了从塌缩态到膨胀态。此外,对四螺旋束和α + β肽模型的模拟证明了疏水核心的塌缩如何驱动折叠基序的出现以及三级或四级组装体的稳定。最后,多肽模型能够在结构上响应由脂质双层的存在引起的环境变化。

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