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通过分子动力学模拟研究肌联蛋白结构域的展开

Unfolding of titin domains studied by molecular dynamics simulations.

作者信息

Gao Mu, Lu Hui, Schulten Klaus

机构信息

Department of Physics, Beckman Institute, University of Illinois at Urbana-Champaign, IL 61801, USA.

出版信息

J Muscle Res Cell Motil. 2002;23(5-6):513-21. doi: 10.1023/a:1023466608163.

Abstract

Titin, a approximately 1 micron long protein found in striated muscle myofibrils, possesses unique elastic properties. The extensible behavior of titin has been demonstrated in atomic force microscopy and optical tweezer experiments to involve the reversible unfolding of individual immunoglobulin-like (Ig) domains. We have used steered molecular dynamics (SMD), a novel computer simulation method, to investigate the mechanical response of single titin Ig domains upon stress. Simulations of stretching Ig domains I1 and I27 have been performed in a solvent of explicit water molecules. The SMD approach provides a detailed structural and dynamic description of how Ig domains react to external forces. Validation of SMD results includes both qualitative and quantitative agreement with AFM recordings. Furthermore, combining SMD with single molecule experimental data leads to a comprehensive understanding of Ig domains' mechanical properties. A set of backbone hydrogen bonds that link the domains' terminal beta-strands play a key role in the mechanical resistance to external forces. Slight differences in architecture permit a mechanical unfolding intermediate for I27, but not for I1. Refolding simulations of I27 demonstrate a locking mechanism.

摘要

肌联蛋白是一种存在于横纹肌肌原纤维中的、长度约为1微米的蛋白质,具有独特的弹性特性。在原子力显微镜和光镊实验中已证实,肌联蛋白的可伸展行为涉及单个免疫球蛋白样(Ig)结构域的可逆展开。我们使用了一种新型计算机模拟方法——引导分子动力学(SMD),来研究单个肌联蛋白Ig结构域在受力时的力学响应。在含有明确水分子的溶剂中对I1和I27这两个Ig结构域进行了拉伸模拟。SMD方法提供了关于Ig结构域如何对外力作出反应的详细结构和动力学描述。SMD结果的验证包括与原子力显微镜记录的定性和定量一致性。此外,将SMD与单分子实验数据相结合,可全面了解Ig结构域的力学特性。一组连接结构域末端β链的主链氢键在对外力的机械抗性中起关键作用。结构上的细微差异使得I27存在机械展开中间体,而I1则不存在。对I27的重折叠模拟展示了一种锁定机制。

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