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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Characterizing Conformational Dynamics of Proteins Using Evolutionary Couplings
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Characterizing Conformational Dynamics of Proteins Using Evolutionary Couplings

机译:使用进化联轴器表征蛋白质的构象动态

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摘要

Understanding of protein conformational dynamics is essential for elucidating molecular origins of protein structure-function relationship. Traditionally, reaction coordinates, i.e., some functions of protein atom positions and velocities have been used to interpret the complex dynamics of proteins obtained from experimental and computational approaches such as molecular dynamics simulations. However, it is nontrivial to identify the reaction coordinates a priori even for small proteins. Here, we evaluate the power of evolutionary couplings (ECs) to capture protein dynamics by exploring their use as reaction coordinates, which can efficiently guide the sampling of a conformational free energy landscape. We have analyzed 10 diverse proteins and shown that a few ECs are sufficient to characterize complex conformational dynamics of proteins involved in folding and conformational change processes. With the rapid strides in sequencing technology, we expect that ECs could help identify reaction coordinates a priori and enhance the sampling of the slow dynamical process associated with protein folding and conformational change.
机译:了解蛋白质构象动态对于阐明蛋白质结构功能关系的分子起源至关重要。传统上,反应坐标,即蛋白质原子位置和速度的一些功能用于解释从实验和计算方法获得的蛋白质的复杂动态和分子动力学模拟。然而,鉴定反应均匀的甚至是小蛋白质的反应是非诱导的。这里,我们通过探索其用作反应坐标来评估进化偶联(ECS)来捕获蛋白质动力学的力量,这可以有效地引导构象自由能景观的采样。我们已经分析了10种不同的蛋白质,并表明少数EC足以表征涉及折叠和构象变化过程的复杂构象动态。随着测序技术的快速进步,我们希望ECS可以帮助识别反应坐标,并增强与蛋白质折叠和构象变化相关的缓慢动态过程的采样。

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