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透明质酸及其复合物的原子分辨率实验结构生物学和分子动力学模拟。

Atomic-Resolution Experimental Structural Biology and Molecular Dynamics Simulations of Hyaluronan and Its Complexes.

机构信息

Department of Pharmaceutical Sciences and Administration, School of Pharmacy, Westbrook College of Health Professions, University of New England, 716 Stevens Avenue, Portland, ME 04103, USA.

出版信息

Molecules. 2022 Oct 26;27(21):7276. doi: 10.3390/molecules27217276.

Abstract

This review summarizes the atomic-resolution structural biology of hyaluronan and its complexes available in the Protein Data Bank, as well as published studies of atomic-resolution explicit-solvent molecular dynamics simulations on these and other hyaluronan and hyaluronan-containing systems. Advances in accurate molecular mechanics force fields, simulation methods and software, and computer hardware have supported a recent flourish in such simulations, such that the simulation publications now outnumber the structural biology publications by an order of magnitude. In addition to supplementing the experimental structural biology with computed dynamic and thermodynamic information, the molecular dynamics studies provide a wealth of atomic-resolution information on hyaluronan-containing systems for which there is no atomic-resolution structural biology either available or possible. Examples of these summarized in this review include hyaluronan pairing with other hyaluronan molecules and glycosaminoglycans, with ions, with proteins and peptides, with lipids, and with drugs and drug-like molecules. Despite limitations imposed by present-day computing resources on system size and simulation timescale, atomic-resolution explicit-solvent molecular dynamics simulations have been able to contribute significant insight into hyaluronan's flexibility and capacity for intra- and intermolecular non-covalent interactions.

摘要

这篇综述总结了可在蛋白质数据库中获得的透明质酸及其复合物的原子分辨率结构生物学,以及已发表的关于这些和其他透明质酸和含透明质酸系统的原子分辨率显式溶剂分子动力学模拟的研究。精确的分子力学力场、模拟方法和软件以及计算机硬件的进步,支持了此类模拟的近期蓬勃发展,以至于模拟出版物的数量现在比结构生物学出版物多出一个数量级。除了用计算得到的动态和热力学信息补充实验结构生物学外,分子动力学研究还为那些既没有原子分辨率结构生物学也不可能获得原子分辨率结构生物学的含透明质酸系统提供了丰富的原子分辨率信息。本文总结的这些例子包括透明质酸与其他透明质酸分子和糖胺聚糖、离子、蛋白质和肽、脂质以及药物和类似药物的分子配对。尽管目前的计算资源对系统大小和模拟时间尺度施加了限制,但原子分辨率显式溶剂分子动力学模拟已经能够为透明质酸的灵活性和其分子内和分子间非共价相互作用的能力提供重要的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/724b/9658939/deb97d9756d1/molecules-27-07276-g001.jpg

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