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隐性溶剂模拟在探索折叠途径方面的效果如何?α-螺旋束蛋白的定量分析。

How Well Can Implicit Solvent Simulations Explore Folding Pathways? A Quantitative Analysis of α-Helix Bundle Proteins.

机构信息

Drug Discovery and Design Center, CAS Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences , 555 Zuchongzhi Road, Shanghai 201203, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Chem Theory Comput. 2017 Dec 12;13(12):6177-6190. doi: 10.1021/acs.jctc.7b00726. Epub 2017 Nov 21.

Abstract

Protein folding has been posing challenges for molecular simulation for decades. Implicit solvent models are sought as routes to increase the capability of simulation, with trade-offs between computational speed and accuracy. Here, we systematically investigate the folding of a variety of α-helix bundle proteins ranging in size from 46 to 102 amino acids using a state-of-the-art force field and an implicit solvent model. The accurate all-atom simulated folding is enabled for six proteins, including for the first time a successful folding of protein with >100 amino acids in implicit solvent. The detailed free-energy landscape analysis sheds light on a set of general principles underlying the folding of α-helix bundle proteins, suggesting a hybrid framework/nucleation-condensation mechanism favorably adopted in implicit solvent condition. The similarities and discrepancies of the folding pathways measured among the present implicit solvent simulations and previously reported experiments and explicit solvent simulations are deeply analyzed, providing quantitative assessment for the availability and limitation of implicit solvent simulation in exploring the folding transition of large-size proteins.

摘要

蛋白质折叠问题几十年来一直是分子模拟领域的难题。人们寻求隐溶剂模型作为提高模拟能力的途径,这需要在计算速度和准确性之间进行权衡。在这里,我们使用最先进的力场和隐溶剂模型,系统地研究了大小从 46 到 102 个氨基酸的各种α-螺旋束蛋白的折叠。成功实现了六个蛋白质的精确全原子模拟折叠,包括首次在隐溶剂中成功折叠超过 100 个氨基酸的蛋白质。详细的自由能景观分析揭示了α-螺旋束蛋白折叠的一组基本原则,表明在隐溶剂条件下,混合的框架/成核-凝聚机制是有利的。深入分析了本研究中隐溶剂模拟与之前报道的实验和显溶剂模拟之间测量的折叠途径的相似性和差异,为隐溶剂模拟在探索大尺寸蛋白质折叠转变中的可用性和局限性提供了定量评估。

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