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构象校对:构象变化对分子识别特异性的影响。

Conformational proofreading: the impact of conformational changes on the specificity of molecular recognition.

机构信息

Department of Physics of Complex Systems, Weizmann Institute of Science, Rehovot, Israel.

出版信息

PLoS One. 2007 May 23;2(5):e468. doi: 10.1371/journal.pone.0000468.

Abstract

To perform recognition, molecules must locate and specifically bind their targets within a noisy biochemical environment with many look-alikes. Molecular recognition processes, especially the induced-fit mechanism, are known to involve conformational changes. This raises a basic question: Does molecular recognition gain any advantage by such conformational changes? By introducing a simple statistical-mechanics approach, we study the effect of conformation and flexibility on the quality of recognition processes. Our model relates specificity to the conformation of the participant molecules and thus suggests a possible answer: Optimal specificity is achieved when the ligand is slightly off target; that is, a conformational mismatch between the ligand and its main target improves the selectivity of the process. This indicates that deformations upon binding serve as a conformational proofreading mechanism, which may be selected for via evolution.

摘要

为了进行识别,分子必须在嘈杂的生化环境中找到并特异性结合其目标,而这个环境中存在许多相似物。众所周知,分子识别过程,特别是诱导契合机制,涉及构象变化。这就提出了一个基本问题:这种构象变化是否会使分子识别获得任何优势?通过引入一种简单的统计力学方法,我们研究了构象和柔韧性对识别过程质量的影响。我们的模型将特异性与参与分子的构象联系起来,从而给出了一个可能的答案:当配体稍微偏离靶子时,最佳特异性得以实现;也就是说,配体与其主要靶标之间的构象不匹配会提高该过程的选择性。这表明结合过程中的变形起到了构象校对机制的作用,这种机制可能是通过进化选择的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6da/1868595/b66978db741e/pone.0000468.g001.jpg

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