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Mechanical properties of the domains of titin in a Go-like model

机译:Go型模型中titin域的机械性能

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摘要

Comparison of properties of three domains of titin, I1, I27, and I28, in a simple geometry-based model shows that despite a high structural homology between their native states different domains show similar but distinguishable mechanical properties. Folding properties of the separate domains are predicted to be diversified which reflects sensitivity of the kinetics to the details of native structures. The Go-like model corresponding to the experimentally resolved native structure of the I1 domain is found to provide the biggest thermodynamic and mechanical stability compared to the other domains studied here. We analyze elastic, thermodynamic, and kinetic properties of several structures corresponding to the I28 domain as obtained through homology-based modeling. We discuss the ability of the models of the I28 domain to reproduce experimental results qualitatively. A strengthening of contacts that involve hydrophobic amino acids does not affect theoretical comparisons of the domains. Tandem linkages of up to five identical or different domains unravel in a serial fashion at low temperatures. We study the nature of the intermediate state that arises in the early stages of the serial unraveling and find it to qualitatively agree with the results of Marszalek (C) 2005 American Institute of Physics.
机译:在简单的基于几何的模型中,titin,I1,I27和I28的三个域的性质比较表明,尽管它们的原始状态之间具有高度的结构同源性,但不同的域却显示出相似但可区分的机械性质。预测单独域的折叠性质是多样化的,这反映了动力学对天然结构细节的敏感性。与此处研究的其他域相比,发现与I1域的实验解析天然结构相对应的Go-like模型具有最大的热力学和机械稳定性。我们分析了通过基于同源性的建模获得的对应于I28域的几种结构的弹性,热力学和动力学性质。我们讨论了I28域模型定性复制实验结果的能力。涉及疏水氨基酸的接触的增强不影响域的理论比较。在低温下,多达五个相同或不同域的串联链接以串联方式解开。我们研究了序列拆解早期出现的中间状态的性质,发现它在质量上与Marszalek(C)2005美国物理研究所的结果相符。

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