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抗体片段中的突变通过氢键网络波动调节变构反应。

Mutations in Antibody Fragments Modulate Allosteric Response Via Hydrogen-Bond Network Fluctuations.

作者信息

Srivastava Amit, Tracka Malgorzata B, Uddin Shahid, Casas-Finet Jose, Livesay Dennis R, Jacobs Donald J

机构信息

Department of Bioinformatics and Genomics, University of North Carolina at Charlotte, Charlotte, North Carolina.

Formulation Sciences, MedImmune Ltd., Cambridge, UK.

出版信息

Biophys J. 2016 May 10;110(9):1933-42. doi: 10.1016/j.bpj.2016.03.033.

Abstract

A mechanical perturbation method that locally restricts conformational entropy along the protein backbone is used to identify putative allosteric sites in a series of antibody fragments. The method is based on a distance constraint model that integrates mechanical and thermodynamic viewpoints of protein structure wherein mechanical clamps that mimic substrate or cosolute binding are introduced. Across a set of six single chain-Fv fragments of the anti-lymphotoxin-β receptor antibody, statistically significant responses are obtained by averaging over 10 representative structures sampled from a molecular dynamics simulation. As expected, the introduced clamps locally rigidify the protein, but long-ranged increases in both rigidity and flexibility are also frequently observed. Expanding our analysis to every molecular dynamics frame demonstrates that the allosteric responses are modulated by fluctuations within the hydrogen-bond network where the native ensemble is comprised of conformations that both are, and are not, affected by the perturbation in question. Population shifts induced by the mutations alter the allosteric response by adjusting which hydrogen-bond networks are the most probable. These effects are compared using response maps that track changes across each single chain-Fv fragment, thus providing valuable insight into how sensitive allosteric mechanisms are to mutations.

摘要

一种沿蛋白质主链局部限制构象熵的机械扰动方法被用于识别一系列抗体片段中的假定变构位点。该方法基于一个距离约束模型,该模型整合了蛋白质结构的力学和热力学观点,其中引入了模拟底物或共溶质结合的机械夹具。在一组抗淋巴毒素-β受体抗体的六个单链Fv片段中,通过对从分子动力学模拟中采样的10个代表性结构进行平均,获得了具有统计学意义的响应。正如预期的那样,引入的夹具使蛋白质局部刚性化,但也经常观察到刚性和柔韧性的长程增加。将我们的分析扩展到每个分子动力学框架表明,变构响应受到氢键网络内波动的调节,其中天然系综由受相关扰动影响和不受其影响的构象组成。突变引起的群体转移通过调整最可能的氢键网络来改变变构响应。使用跟踪每个单链Fv片段变化的响应图对这些效应进行比较,从而为变构机制对突变的敏感程度提供了有价值的见解。

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