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Structure of the mature P3-virus particle complex of cauliflower mosaic virus revealed by cryo-electron microscopy

机译:花椰菜花叶病毒成熟P3-病毒颗粒复合物的结构通过冷冻电子显微镜观察

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The cauliflower mosaic virus (CaMV) has an icosahedral capsid composed of the viral protein P4. The viral product P3 is a multifunctional protein closely associated with the virus particle within host cells. The best-characterized function of P3 is its implication in CaMV plant-to-plant transmission by aphid vectors, involving a P3-virion complex. In this transmission process, the viral protein P2 attaches to virion-bound P3, and creates a molecular bridge between the virus and a putative receptor in the aphid's stylets. Recently, the virion-bound P3 has been suggested to participate in cell-to-cell or long-distance movement of CaMV within the host plant. Thus, as new data accumulate, the importance of the P3-virion complex during the virus life-cycle is becoming more and more evident. To provide a first insight into the knowledge of the transmission process of the virus, we determined the 3D structures of native and P3-decorated virions, by cryo-electron microscopy and computer image processing. By difference mapping and biochemical analysis, we show that P3 forms a network around the capsomers and we propose a structural model for the binding of P3 to CaMV capsid in which its C terminus is anchored deeply in the inner shell of the virion, while the N-terminal extremity is facing out of the CaMV capsid, forming dimers by coiled-coil interactions. Our results combined with existing data reinforce the hypothesis that this coiled-coil N-terminal region of P3 could coordinate several functions during the virus life-cycle, such as cell-to-cell movement and aphid-transmission. (C) 2004 Elsevier Ltd. All rights reserved.
机译:花椰菜花叶病毒(CaMV)具有由病毒蛋白P4组成的二十面体衣壳。病毒产物P3是与宿主细胞内的病毒颗粒紧密相关的多功能蛋白。 P3的最典型的功能是其在蚜虫介导的CaMV植物间传播中的作用,涉及P3病毒体复合物。在这种传播过程中,病毒蛋白P2附着在结合病毒体的P3上,并在病毒和蚜虫口针的推定受体之间建立了分子桥。最近,已建议结合病毒体的P3参与宿主植物内CaMV的细胞间或长距离运动。因此,随着新数据的积累,P3-病毒体复合物在病毒生命周期中的重要性越来越明显。为了提供对病毒传播过程的初步了解,我们通过冷冻电子显微镜和计算机图像处理技术确定了天然和P3装饰的病毒体的3D结构。通过差异作图和生化分析,我们表明P3在衣壳周围形成网络,并提出了P3与CaMV衣壳结合的结构模型,其中其C端深入锚定在病毒体的内壳中,而N -末端末端面对CaMV衣壳,通过盘绕线圈相互作用形成二聚体。我们的结果与现有数据相结合,进一步证实了以下假设:P3的螺旋卷曲N末端区域可以在病毒生命周期内协调多种功能,例如细胞间的移动和蚜虫的传播。 (C)2004 Elsevier Ltd.保留所有权利。

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