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计算视角下钙离子在蛋白-糖胺聚糖体系中的作用。

Computational insights into the role of calcium ions in protein-glycosaminoglycan systems.

机构信息

Faculty of Chemistry, University of Gdańsk, ul. Wita Stwosza 63, 80-308 Gdańsk, Poland.

出版信息

Phys Chem Chem Phys. 2021 Feb 7;23(5):3519-3530. doi: 10.1039/d0cp05438k. Epub 2021 Jan 29.

Abstract

Glycosaminoglycans (GAGs) are anionic, periodic, linear polysaccharides which are composed of periodic disaccharide units. They play a vital role in many biological processes ongoing in the extracellular matrix. In terms of computational approaches, GAGs are very challenging molecules due to their high flexibility, periodicity, predominantly electrostatic-driven nature of interactions with their protein counterparts and potential multipose binding. Furthermore, the molecular mechanisms underlying GAG-mediated interactions are not fully known yet, and experimental techniques alone are not always sufficient to gain insights into them. The aim of this study was to characterize protein-ion-GAG complexes for the systems where ions are directly involved in GAG binding. Molecular docking, molecular dynamics and free energy calculation approaches were applied to model and rigorously analyse the interactions between annexins (II and V), calcium ions (Ca) and heparin (HP). The computational data were examined and discussed in the context of the structural data previously reported by the crystallographic studies. The computational results confirm that the presence of Ca has a tremendous impact on the annexin-HP binding site. This study provides a general computational pipeline to discover the complexity of protein-GAG interactions and helps to understand the role of ions involved at the atomic level. The limitations of the applied protocols are described and discussed pointing at the challenges persisting in the state-of-the-art in silico tools to study protein-ion-GAG systems.

摘要

糖胺聚糖(GAGs)是带负电荷的、周期性的、线性多糖,由周期性的二糖单元组成。它们在细胞外基质中进行的许多生物过程中起着至关重要的作用。就计算方法而言,由于 GAGs 的高度灵活性、周期性、与蛋白质对应物相互作用的主要静电驱动性质以及潜在的多态结合,它们是非常具有挑战性的分子。此外,GAG 介导相互作用的分子机制尚未完全了解,仅依靠实验技术并不总是足以深入了解这些机制。本研究的目的是表征其中离子直接参与 GAG 结合的系统中的蛋白-离子-GAG 复合物。应用分子对接、分子动力学和自由能计算方法来模拟和严格分析 annexin(II 和 V)、钙离子(Ca)和肝素(HP)之间的相互作用。在先前的晶体学研究报告的结构数据的背景下检查和讨论计算数据。计算结果证实,Ca 的存在对 annexin-HP 结合位点有巨大影响。本研究提供了一种通用的计算方法来发现蛋白-GAG 相互作用的复杂性,并有助于在原子水平上理解涉及的离子的作用。描述并讨论了所应用方案的局限性,指出了在研究蛋白-离子-GAG 系统的最新计算工具中仍然存在的挑战。

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