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在蛋白质-糖胺聚糖复合物的分子建模中,显溶剂斥力标度 replica 交换分子动力学 (RS-REMD)。

Explicit solvent repulsive scaling replica exchange molecular dynamics (RS-REMD) in molecular modeling of protein-glycosaminoglycan complexes.

机构信息

Faculty of Chemistry, University of Gdańsk, Gdańsk, Poland.

Intercollegiate Faculty of Biotechnology, Universuty of Gdańsk and Medical University of Gdańsk, Gdańsk, Poland.

出版信息

J Comput Chem. 2022 Sep 15;43(24):1633-1640. doi: 10.1002/jcc.26965. Epub 2022 Jul 7.

Abstract

Glycosaminoglcyans (GAGs), linear anionic periodic polysaccharides, are crucial for many biologically relevant functions in the extracellular matrix. By interacting with proteins GAGs mediate processes such as cancer development, cell proliferation and the onset of neurodegenerative diseases. Despite this eminent importance of GAGs, they still represent a limited focus for the computational community in comparison to other classes of biomolecules. Therefore, there is a lack of modeling tools designed specifically for docking GAGs. One has to rely on existing docking software developed mostly for small drug molecules substantially differing from GAGs in their basic physico-chemical properties. In this study, we present an updated protocol for docking GAGs based on the Repulsive Scaling Replica Exchange Molecular Dynamics (RS-REMD) that includes explicit solvent description. The use of this water model improved docking performance both in terms of its accuracy and speed. This method represents a significant computational progress in GAG-related research.

摘要

糖胺聚糖(GAGs)是线性阴离子周期性多糖,对于细胞外基质中的许多与生物学相关的功能至关重要。通过与蛋白质相互作用,GAGs 介导了癌症发展、细胞增殖和神经退行性疾病发作等过程。尽管 GAGs 具有如此重要的意义,但与其他类别的生物分子相比,它们仍然是计算科学界关注的有限焦点。因此,缺乏专门为 GAGs 对接设计的建模工具。人们不得不依赖于现有的对接软件,这些软件主要是为小分子药物开发的,与 GAGs 在基本物理化学性质上有很大的不同。在这项研究中,我们提出了一种基于排斥缩放再交换分子动力学(RS-REMD)的更新的 GAGs 对接方案,该方案包括显式溶剂描述。使用这种水模型提高了对接的准确性和速度。这种方法代表了 GAG 相关研究的重要计算进展。

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