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肌动蛋白相关蛋白2/3复合物的分子动力学模拟与粗粒度分析

Molecular dynamics simulation and coarse-grained analysis of the Arp2/3 complex.

作者信息

Pfaendtner Jim, Voth Gregory A

机构信息

Department of Chemistry, Center for Biophysical Modeling and Simulation, University of Utah, Salt Lake City, Utah 84112-0850, USA.

出版信息

Biophys J. 2008 Dec;95(11):5324-33. doi: 10.1529/biophysj.108.143313. Epub 2008 Sep 19.

Abstract

A molecular dynamics investigation and coarse-grained analysis of inactivated actin-related protein (Arp) 2/3 complex is presented. It was found that the nucleotide binding site within Arp3 remained in a closed position with bound ATP or ADP, but opened when simulation with no nucleotide was performed. In contrast, simulation of the isolated Arp3 subunit with bound ATP, showed a fast opening of the nucleotide binding cleft. A homology model for the missing subdomains 1 and 2 of Arp2 was constructed, and it was also found that the Arp2 binding cleft remained closed with bound nucleotide. Within the nucleotide binding cleft a distinct opening and closing period of 10 ns was observed in many of the simulations of Arp2/3 as well as isolated Arp3. Substitution studies were employed, and several alanine substitutions were found to induce a partial opening of the ATP binding cleft in Arp3 and Arp2, whereas only a single substitution was found to induce opening of the ADP binding cleft. It was also found that the nucleotide type did not cause a substantial change on interfacial contacts between Arp3 and the ArpC2, ArpC3 and ArpC4 subunits. Nucleotide-free Arp3 had generally less stable contacts, but the overall contact architecture was constant. Finally, nucleotide-dependent coarse-grained models for Arp3 are developed that serve to further highlight the structural differences induced in Arp3 by nucleotide hydrolysis.

摘要

本文介绍了对失活的肌动蛋白相关蛋白(Arp)2/3复合物的分子动力学研究和粗粒度分析。研究发现,Arp3内的核苷酸结合位点在结合ATP或ADP时保持关闭状态,但在无核苷酸模拟时会打开。相比之下,对结合ATP的分离Arp3亚基进行模拟时,核苷酸结合裂隙快速打开。构建了Arp2缺失的亚结构域1和2的同源模型,还发现Arp2结合裂隙在结合核苷酸时保持关闭。在Arp2/3以及分离的Arp3的许多模拟中,在核苷酸结合裂隙内观察到10纳秒的明显开闭周期。进行了取代研究,发现几个丙氨酸取代会诱导Arp3和Arp2中ATP结合裂隙部分打开,而仅发现一个取代会诱导ADP结合裂隙打开。还发现核苷酸类型对Arp3与ArpC2、ArpC3和ArpC4亚基之间的界面接触没有实质性影响。无核苷酸的Arp3通常具有不太稳定的接触,但整体接触结构是恒定的。最后,开发了Arp3的核苷酸依赖性粗粒度模型,以进一步突出核苷酸水解在Arp3中诱导的结构差异。

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