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EGFP 发色团及其一些类似物的分子动力学力场参数。

Molecular Dynamics Force Field Parameters for the EGFP Chromophore and Some of Its Analogues.

机构信息

Hope College Department of Chemistry, Holland, Michigan 49423, United States.

出版信息

J Phys Chem B. 2023 Jul 6;127(26):5772-5788. doi: 10.1021/acs.jpcb.3c01486. Epub 2023 Jun 26.

Abstract

Fluorescent proteins (FPs) have had an enormous impact on molecular and cellular biology and are employed in a wide range of studies of molecular structure and dynamics. Yet, only a modest number of papers have published molecular dynamics (MD) parameters describing FPs. And despite the development of a wide range of FPs, there has been no careful development of MD parameters across a series of FPs. In this work, we present MD parameters describing six fluorescent protein chromophores (EGFP, EBFP, EYFP, ECFP, mCherry, and DsRed) for use with the Cornell . ( 1995, 117, 5179-5197) family of AMBER force fields, including ff14SB and ff19SB. We explore a wide range of solvent dielectric constants for determining the chromophore equilibrium geometry and evaluate the impact of the modeled solvent on the final atomic charges. We also present our methodological approach in which we considered all six chromophores together with a focus on modularity, transferability, and balance with existing force fields. The parameters given here make it easy to employ MD simulations to study any of the six systems, whereas the methodology makes it easy for anyone to extend this work to develop consistent parameters for additional fluorescent proteins. The results of our own MD simulations are presented, showing that the classical MD parameters yield chromophore structural distributions that compare well with QM/MM simulations.

摘要

荧光蛋白(FPs)对分子和细胞生物学产生了巨大的影响,广泛应用于分子结构和动力学的研究。然而,只有少数几篇论文发表了描述 FPs 的分子动力学(MD)参数。尽管开发了多种 FPs,但并没有在一系列 FPs 中仔细开发 MD 参数。在这项工作中,我们提出了描述六个荧光蛋白发色团(EGFP、EBFP、EYFP、ECFP、mCherry 和 DsRed)的 MD 参数,用于使用康奈尔. ( 1995, 117, 5179-5197) 系列 AMBER 力场,包括 ff14SB 和 ff19SB。我们探索了广泛的溶剂介电常数范围,以确定发色团的平衡几何形状,并评估模型化溶剂对最终原子电荷的影响。我们还介绍了我们的方法,其中我们一起考虑了所有六个发色团,重点是模块化、可转移性和与现有力场的平衡。这里给出的参数使得很容易使用 MD 模拟来研究这六个系统中的任何一个,而该方法使得任何人都可以轻松扩展这项工作,为其他荧光蛋白开发一致的参数。我们呈现了自己的 MD 模拟结果,表明经典 MD 参数产生的发色团结构分布与 QM/MM 模拟很好地吻合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8fa/10331734/a3da9d0ac280/jp3c01486_0002.jpg

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