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通过分子动力学模拟对蚊子气味结合蛋白pH依赖性构象变化的见解

Insights on pH-dependent conformational changes of mosquito odorant binding proteins by molecular dynamics simulations.

作者信息

Manoharan Malini, Fuchs Patrick F J, Sowdhamini Ramanathan, Offmann Bernard

机构信息

a DSIMB , University of La Reunion , 97400 , Saint-Denis, La Reunion , France .

出版信息

J Biomol Struct Dyn. 2014;32(11):1742-51. doi: 10.1080/07391102.2013.834118. Epub 2013 Sep 13.

Abstract

Chemical recognition plays an important role for the survival and reproduction of many insect species. Odorant binding proteins (OBPs) are the primary components of the insect olfactory mechanism and have been documented to play an important role in the host-seeking mechanism of mosquitoes. They are "transport proteins" believed to transport odorant molecules from the external environment to their respective membrane targets, the olfactory receptors. The mechanism by which this transport occurs in mosquitoes remains a conundrum in this field. Nevertheless, OBPs have proved to be amenable to conformational changes mediated by a pH change in other insect species. In this paper, the effect of pH on the conformational flexibility of mosquito OBPs is assessed computationally using molecular dynamics simulations of a mosquito OBP "CquiOBP1" bound to its pheromone 3OG (PDB ID: 3OGN). Conformational twist of a loop, driven by a set of well-characterized changes in intramolecular interactions of the loop, is demonstrated. The concomitant (i) closure of what is believed to be the entrance of the binding pocket, (ii) expansion of what could be an exit site, and (iii) migration of the ligand towards this putative exit site provide preliminary insights into the mechanism of ligand binding and release of these proteins in mosquitoes. The correlation of our results with previous experimental observations based on NMR studies help us provide a cardinal illustration on one of the probable dynamics and mechanism by which certain mosquito OBPs could deliver their ligand to their membrane-bound receptors at specific pH conditions.

摘要

化学识别对许多昆虫物种的生存和繁殖起着重要作用。气味结合蛋白(OBPs)是昆虫嗅觉机制的主要组成部分,并且已被证明在蚊子寻找宿主的机制中发挥重要作用。它们是“转运蛋白”,被认为可将气味分子从外部环境转运至各自的膜靶点——嗅觉受体。在蚊子中这种转运发生的机制仍是该领域的一个难题。然而,在其他昆虫物种中,OBPs已被证明会因pH变化介导而发生构象变化。在本文中,使用与信息素3OG结合的蚊子OBP“CquiOBP1”(PDB ID:3OGN)的分子动力学模拟,通过计算评估了pH对蚊子OBPs构象灵活性的影响。由环内分子内相互作用的一系列特征明确的变化驱动,展示了一个环的构象扭转。伴随发生的(i)被认为是结合口袋入口的关闭,(ii)可能是出口位点的扩张,以及(iii)配体向这个假定出口位点的迁移,为这些蛋白质在蚊子中配体结合和释放的机制提供了初步见解。我们的结果与基于核磁共振研究的先前实验观察结果的相关性,有助于我们对某些蚊子OBPs在特定pH条件下将其配体传递至膜结合受体的一种可能动力学和机制提供基本说明。

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