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Structural Insights into the Molecular Mechanisms of Cauliflower Mosaic Virus Transmission by Its Insect Vector

机译:花椰菜花叶病毒通过昆虫载体传播的分子机制的结构性观察

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摘要

Cauliflower mosaic virus (CaMV) is transmitted from plant to plant through a seemingly simple interaction with insect vectors. This process involves an aphid receptor and two viral proteins, P2 and P3. P2 binds to both the aphid receptor and P3, itself tightly associated with the virus particle, with the ensemble forming a transmissible viral complex. Here, we describe the conformations of both unliganded CaMV P3 protein and its virion-associated form. X-ray crystallography revealed that the N-terminal domain of unliganded P3 is a tetrameric parallel coiled coil with a unique organization showing two successive four-stranded subdomains with opposite supercoiling handedness stabilized by a ring of interchain disulfide bridges. A structural model of virus-liganded P3 proteins, folding as an antiparallel coiled-coil network coating the virus surface, was derived from molecular modeling. Our results highlight the structural and biological versatility of this coiled-coil structure and provide new insights into the molecular mechanisms involved in CaMV acquisition and transmission by the insect vector.
机译:花椰菜花叶病毒(CaMV)通过与昆虫载体的看似简单的相互作用在植物之间传播。该过程涉及蚜虫受体和两种病毒蛋白P2和P3。 P2既与蚜虫受体结合,又与病毒颗粒紧密结合的P3结合在一起,形成可传播的病毒复合体。在这里,我们描述了未结合的CaMV P3蛋白及其病毒体相关形式的构象。 X射线晶体学表明未配体P3的N末端结构域是四聚体平行盘绕的线圈,具有独特的结构,显示两个连续的四链亚结构域,具有相反的超螺旋性,并通过链间二硫键环稳定。从分子模型推导了与病毒结合的P3蛋白的结构模型,该结构模型折叠为覆盖病毒表面的反平行的卷曲螺旋网络。我们的研究结果突出了这种盘绕线圈结构的结构和生物学多功能性,并为昆虫载体捕获和传播CaMV的分子机制提供了新的见解。

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