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优化脂质膜上F-BAR蛋白的Gō-MARTINI粗粒度模型。

Optimizing Gō-MARTINI Coarse-Grained Model for F-BAR Protein on Lipid Membrane.

作者信息

Mahmood Md Iqbal, Poma Adolfo B, Okazaki Kei-Ichi

机构信息

Department of Theoretical and Computational Molecular Science, Institute for Molecular Science, National Institutes of Natural Sciences, Okazaki, Japan.

Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw, Poland.

出版信息

Front Mol Biosci. 2021 Feb 22;8:619381. doi: 10.3389/fmolb.2021.619381. eCollection 2021.

Abstract

Coarse-grained (CG) molecular dynamics (MD) simulations allow us to access much larger length and time scales than atomistic MD simulations, providing an attractive alternative to the conventional simulations. Based on the well-known MARTINI CG force field, the recently developed Gō-MARTINI model for proteins describes large-amplitude structural dynamics, which has not been possible with the commonly used elastic network model. Using the Gō-MARTINI model, we conduct MD simulations of the F-BAR Pacsin1 protein on lipid membrane. We observe that structural changes of the non-globular protein are largely dependent on the definition of the native contacts in the Gō model. To address this issue, we introduced a simple cutoff scheme and tuned the cutoff distance of the native contacts and the interaction strength of the Lennard-Jones potentials in the Gō-MARTINI model. With the optimized Gō-MARTINI model, we show that it reproduces structural fluctuations of the Pacsin1 dimer from atomistic simulations. We also show that two Pacsin1 dimers properly assemble through lateral interaction on the lipid membrane. Our work presents a first step towards describing membrane remodeling processes in the Gō-MARTINI CG framework by simulating a crucial step of protein assembly on the membrane.

摘要

粗粒度(CG)分子动力学(MD)模拟使我们能够研究比原子尺度MD模拟大得多的长度和时间尺度,为传统模拟提供了一种有吸引力的替代方法。基于著名的MARTINI CG力场,最近开发的用于蛋白质的Gō-MARTINI模型描述了大振幅结构动力学,这是常用的弹性网络模型无法实现的。使用Gō-MARTINI模型,我们对脂质膜上的F-BAR Pacsin1蛋白进行了MD模拟。我们观察到非球状蛋白的结构变化在很大程度上取决于Gō模型中天然接触的定义。为了解决这个问题,我们引入了一种简单的截止方案,并调整了Gō-MARTINI模型中天然接触的截止距离和 Lennard-Jones 势的相互作用强度。通过优化的Gō-MARTINI模型,我们表明它再现了来自原子模拟的Pacsin1二聚体的结构波动。我们还表明,两个Pacsin1二聚体通过脂质膜上的横向相互作用正确组装。我们的工作通过模拟膜上蛋白质组装的关键步骤,朝着在Gō-MARTINI CG框架中描述膜重塑过程迈出了第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c472/7937874/82f0e44278ab/fmolb-08-619381-g001.jpg

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