首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Crystal and solution structures of an odorant-binding protein from the southern house mosquito complexed with an oviposition pheromone
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Crystal and solution structures of an odorant-binding protein from the southern house mosquito complexed with an oviposition pheromone

机译:南方家蝇蚊与产卵信息素复合的气味结合蛋白的晶体和溶液结构

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摘要

Culex mosquitoes introduce the pathogens responsible for filariasis, West Nile virus, St. Louis encephalitis, and other diseases into humans. Currently, traps baited with oviposition semiochemicals play an important role in detection efforts and could provide an environmentally friendly approach to controlling their populations. The odorant binding proteins (OBPs) in the female's antenna play a crucial, if yet imperfectly understood, role in sensing oviposition cues. Here, we report the X-ray crystallography and NMR 3D structures of OBP1 for Culex quinquefasciatus (CquiOBP1) bound to an oviposition pheromone (5R,6S)-6-acetoxy-5-hexadecanolide (MOP). In both studies, CquiOBP1 had the same overall six-helix structure seen in other insect OBPs, but a detailed analysis revealed an important previously undescribed feature. There are two models for OBP-mediated signal transduction: (i) direct release of the pheromone from an internal binding pocket in a pH-dependent fashion and (ii) detection of a pheromone-induced conformational change in the OBP·pheromone complex. Although CquiOBP1 binds MOP in a pH-dependent fashion, it lacks the C terminus required for the pH-dependent release model. This study shows that CquiOBP binds MOP in an unprecedented fashion using both a small central cavity for the lactone head group and a long hydrophobic channel for its tail.
机译:蚊虫将引起丝虫病,西尼罗河病毒,圣路易斯脑炎和其他疾病的病原体引入人类。目前,用产卵化学信息素诱饵的诱捕器在检测工作中起着重要作用,并且可以提供一种环境友好的方法来控制其种群。雌性触角中的气味结合蛋白(OBP)在感知排卵信号中起着至关重要的作用,即使尚未完全理解。在这里,我们报告X射线晶体学和OBP1的Culex quinquefasciatus(CquiOBP1)绑定到产卵信息素(5R,6S)-6-乙酰氧基-5-十六醇(MOP)的3D结构。在两项研究中,CquiOBP1具有与其他昆虫OBP相同的整体六螺旋结构,但经过详细分析后发现,它具有以前未描述的重要特征。 OBP介导的信号转导有两种模型:(i)以pH依赖的方式从内部结合袋中直接释放信息素,以及(ii)检测OBP·信息素复合物中信息素诱导的构象变化。尽管CquiOBP1以pH依赖的方式结合MOP,但它缺少pH依赖的释放模型所需的C末端。这项研究表明,CquiOBP以前所未有的方式结合MOP,使用的是内酯头基团的小中心腔和尾部的长疏水通道。

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