Hu Xin, Lee Michael S, Wallqvist Anders
Biotechnology HPC Software Applications Institute, Telemedicine and Advanced Technology Research Center, US Army Medical Research and Materiel Command, Fort Detrick, Maryland 21702, USA.
Biochemistry. 2009 Dec 1;48(47):11158-60. doi: 10.1021/bi9017347.
We describe an efficient approach to model the binding interaction of the disordered effector protein to its cognate chaperone in the type III secretion system (T3SS). Starting from de novo models, we generated ensembles of unfolded conformations of the Yersinia effector YopE using REMD simulations and docked them to the chaperone SycE using a multistep protein docking strategy. The predicted YopE/SycE complex was in good agreement with the experimental structure. The ability of our computational protocol to mimic the structural transition upon chaperone binding opens up the possibility of studying the underlying specificity of chaperone/effector interactions and devising strategies for interfering with T3SS transport.
我们描述了一种有效的方法,用于模拟III型分泌系统(T3SS)中无序效应蛋白与其同源伴侣蛋白之间的结合相互作用。从从头模型开始,我们使用副本交换分子动力学(REMD)模拟生成了耶尔森氏菌效应蛋白YopE的未折叠构象集合,并使用多步蛋白质对接策略将它们对接至伴侣蛋白SycE。预测的YopE/SycE复合物与实验结构高度吻合。我们的计算方案模拟伴侣蛋白结合时结构转变的能力,为研究伴侣蛋白/效应蛋白相互作用的潜在特异性以及设计干扰T3SS转运的策略开辟了可能性。