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利用全局骨架几何参数化增强蛋白质环的构象探索。

Enhanced conformational exploration of protein loops using a global parameterization of the backbone geometry.

机构信息

Algorithms-Biology-Structure, Centre Inria at Université Côte d'Azur, Sophia Antipolis, France.

出版信息

J Comput Chem. 2023 Apr 30;44(11):1094-1104. doi: 10.1002/jcc.27067. Epub 2023 Feb 2.

Abstract

Flexible loops are paramount to protein functions, with action modes ranging from localized dynamics contributing to the free energy of the system, to large amplitude conformational changes accounting for the repositioning whole secondary structure elements or protein domains. However, generating diverse and low energy loops remains a difficult problem. This work introduces a novel paradigm to sample loop conformations, in the spirit of the hit-and-run (HAR) Markov chain Monte Carlo technique. The algorithm uses a decomposition of the loop into tripeptides, and a novel characterization of necessary conditions for Tripeptide Loop Closure to admit solutions. Denoting m the number of tripeptides, the algorithm works in an angular space of dimension 12 m. In this space, the hyper-surfaces associated with the aforementioned necessary conditions are used to run a HAR-like sampling technique. On classical loop cases up to 15 amino acids, our parameter free method compares favorably to previous work, generating more diverse conformational ensembles. We also report experiments on a 30 amino acids long loop, a size not processed in any previous work.

摘要

柔性环对蛋白质功能至关重要,其作用模式范围从局部动力学影响系统自由能,到大幅度构象变化导致整个二级结构元件或蛋白质结构域重新定位。然而,生成多样化且低能量的环仍然是一个难题。这项工作引入了一种新的环构象采样范例,灵感来自于 hit-and-run (HAR) 马尔可夫链蒙特卡罗技术。该算法将环分解为三肽,并对三肽环封闭的必要条件进行了新颖的描述,以允许解的存在。记 m 为三肽的数量,算法在维度为 12m 的角空间中工作。在这个空间中,与上述必要条件相关的超曲面被用来运行类似 HAR 的采样技术。在多达 15 个氨基酸的经典环案例中,我们的无参数方法与以前的工作相比表现出色,生成了更多样化的构象集合。我们还报告了一个 30 个氨基酸长的环的实验,这是以前的工作中没有处理过的大小。

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