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Key structural features of the actin filament Arp2/3 complex branch junction revealed by molecular simulation

机译:分子模拟揭示肌动蛋白丝Arp2 / 3复杂分支连接的关键结构特征

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摘要

We investigated the structure, properties and dynamics of the actin filament branch junction formed by actin-related protein (Arp) 2/3 complex using all-atom molecular dynamics (MD) simulations based on a model fit to a reconstruction from electron tomograms. Simulations of the entire structure consisting of 31 protein subunits together with solvent molecules containing ~ 3 million atoms were performed for an aggregate time of 175 ns. One 75-ns simulation of the original reconstruction was compared to two 50-ns simulations of alternate structures, showing that the hypothesized branch junction structure is very stable. Our simulations revealed that the interface between Arp2/3 complex and the mother actin filament features a large number of salt bridges and hydrophobic contacts, many of which are dynamic and formed/broken on the timescale of the simulation. The simulations suggest that the DNase binding loops in Arp3, and possibly Arp2, form stabilizing contacts with the mother filament. Unbiased comparison of models sampled from the MD simulation trajectory with the primary experimental electron tomography data identified regions were snapshots from the simulation provide atomic details of the model structures and also pinpoints regions where the initial modeling based on the electron tomogram reconstruction may be suboptimal.
机译:我们使用基于电子断层图重建模型的全原子分子动力学(MD)模拟研究了肌动蛋白相关蛋白(Arp)2/3复合物形成的肌动蛋白丝分支结的结构,性质和动力学。对总结构为175 ns的包含31个蛋白质亚基和约300万个原子的溶剂分子的整个结构进行了模拟。将原始重构的一个75 ns模拟与备用结构的两个50 ns模拟进行了比较,表明假设的分支结结构非常稳定。我们的模拟表明,Arp2 / 3复合物与肌动蛋白母丝之间的界面具有大量的盐桥和疏水接触,其中许多是动态的,并且在模拟的时间尺度上形成/破坏。该模拟表明,Arp3以及可能的Arp2中的DNase结合环与母丝形成稳定的接触。从MD仿真轨迹采样的模型与主要实验电子断层扫描数据的无偏比较,从仿真快照中识别出的区域不仅提供了模型结构的原子细节,还指出了基于电子断层图像重建的初始建模可能欠佳的区域。

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