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疏水相互作用和盐桥在β-发夹折叠中的作用。

Role of hydrophobic interactions and salt-bridges in beta-hairpin folding.

作者信息

Seshasayee Aswin Sai Narain, Raghunathan Krishnan, Sivaraman Karthikeyan, Pennathur Gautam

机构信息

Distributed Information Centre, Centre for Biotechnology, Anna University, 600025 Chennai , India.

出版信息

J Mol Model. 2006 Jan;12(2):197-204. doi: 10.1007/s00894-005-0018-6. Epub 2005 Oct 18.

Abstract

Beta-hairpins are the simplest form of beta-sheets which, due to the presence of long-range interactions, can be considered as tertiary structures. Molecular dynamics simulation is a powerful tool that can unravel whole pathways of protein folding/unfolding at atomic resolution. We have performed several molecular dynamics simulations, to a total of over 250 ns, of a beta-hairpin peptide in water using GROMACS. We show that hydrophobic interactions are necessary for initiating the folding of the peptide. Once formed, the peptide is stabilized by hydrogen bonds and disruption of hydrophobic interactions in the folded peptide does not denature the structure. In the absence of hydrophobic interactions, the peptide fails to fold. However, the introduction of a salt-bridge compensates for the loss of hydrophobic interactions to a certain extent.

摘要

β-发夹是β-折叠最简单的形式,由于存在长程相互作用,可被视为三级结构。分子动力学模拟是一种强大的工具,能够在原子分辨率下揭示蛋白质折叠/去折叠的完整途径。我们使用GROMACS对水中的一个β-发夹肽进行了多次分子动力学模拟,总时长超过250纳秒。我们发现疏水相互作用对于启动肽的折叠是必要的。一旦形成,肽通过氢键得以稳定,并且折叠肽中疏水相互作用的破坏并不会使结构变性。在没有疏水相互作用的情况下,肽无法折叠。然而,引入一个盐桥在一定程度上弥补了疏水相互作用的缺失。

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