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计算机模拟和建模辅助的 ToxR 筛选在解析跨膜 α-螺旋二聚体的 3D 结构中的应用:Eph 受体 A1。

Computer simulations and modeling-assisted ToxR screening in deciphering 3D structures of transmembrane alpha-helical dimers: ephrin receptor A1.

机构信息

M.M. Shemyakin & Yu.A. Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences Ul, Miklukho-Maklaya, 16/10, 117997 GSP, Moscow V-437, Russia.

出版信息

Phys Biol. 2010 Mar 12;7:16014. doi: 10.1088/1478-3975/7/1/016014.

Abstract

Membrane-spanning segments of numerous proteins (e.g. receptor tyrosine kinases) represent a novel class of pharmacologically important targets, whose activity can be modulated by specially designed artificial peptides, the so-called interceptors. Rational construction of such peptides requires understanding of the main factors driving peptide-peptide association in lipid membranes. Here we present a new method for rapid prediction of the spatial structure of transmembrane (TM) helix-helix complexes. It is based on computer simulations in membrane-like media and subsequent refinement/validation of the results using experimental studies of TM helix dimerization in a bacterial membrane by means of the ToxR system. The approach was applied to TM fragments of the ephrin receptor A1 (EphA1). A set of spatial structures of the dimer was proposed based on Monte Carlo simulations in an implicit membrane followed by molecular dynamics relaxation in an explicit lipid bilayer. The resulting models were employed for rational design of wild-type and mutant genetic constructions for ToxR assays. The computational and the experimental data are self-consistent and provide an unambiguous spatial model of the TM dimer of EphA1. The results of this work can be further used to develop new biologically active 'peptide interceptors' specifically targeting membrane domains of proteins.

摘要

许多蛋白质(例如受体酪氨酸激酶)的跨膜片段代表了一类新型的具有重要药理学意义的靶标,其活性可以通过专门设计的人工肽(即所谓的“拦截器”)进行调节。合理构建此类肽需要了解驱动脂质膜中肽-肽相互作用的主要因素。本文提出了一种快速预测跨膜(TM)螺旋-螺旋复合物空间结构的新方法。该方法基于在类膜介质中的计算机模拟,然后使用 ToxR 系统在细菌膜中研究 TM 螺旋二聚化的实验研究来对结果进行细化/验证。该方法应用于 EphA1 的 TM 片段。基于在隐式膜中的蒙特卡罗模拟以及在显式脂质双层中的分子动力学松弛,提出了一组二聚体的空间结构。基于该模型,对 ToxR 测定的野生型和突变遗传构建体进行了合理设计。计算数据和实验数据是一致的,提供了 EphA1 的 TM 二聚体的明确空间模型。这项工作的结果可进一步用于开发专门针对蛋白质膜域的新型生物活性“肽拦截器”。

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