INSERM, Unité 1054, Montpellier, France.
J Struct Biol. 2013 Apr;182(1):1-9. doi: 10.1016/j.jsb.2013.01.007. Epub 2013 Jan 30.
Arabis mosaic virus (ArMV) and Grapevine fanleaf virus (GFLV) are two picorna-like viruses from the genus Nepovirus, consisting in a bipartite RNA genome encapsidated into a 30 nm icosahedral viral particle formed by 60 copies of a single capsid protein (CP). They are responsible for a severe degeneration of grapevines that occurs in most vineyards worldwide. Although sharing a high level of sequence identity between their CP, ArMV is transmitted exclusively by the ectoparasitic nematode Xiphinema diversicaudatum whereas GFLV is specifically transmitted by the nematode X. index. The structural determinants involved in the transmission specificity of both viruses map solely to their respective CP. Recently, reverse genetic and crystallographic studies on GFLV revealed that a positively charged pocket in the CP B domain located at the virus surface may be responsible for vector specificity. To go further into delineating the coat protein determinants involved in transmission specificity, we determined the 6.5 Å resolution cryo-electron microscopy structure of ArMV and used homology modeling and flexible fitting approaches to build its pseudo-atomic structure. This study allowed us to resolve ArMV CP architecture and delineate connections between ArMV capsid shell and its RNA. Comparison of ArMV and GFLV CPs reveals structural differences in the B domain pocket, thus strengthening the hypothesis of a key role of this region in the viral transmission specificity and identifies new potential functional domains of Nepovirus capsid.
阿拉伯菜花叶病毒(ArMV)和葡萄扇叶病毒(GFLV)是两种来自 Nepovirus 属的类似正链 RNA 病毒,由两个分段的 RNA 基因组组成,分别包裹在一个 30nm 的二十面体病毒粒子中,该粒子由 60 个单体衣壳蛋白(CP)组成。它们是导致世界上大多数葡萄园葡萄严重退化的原因。尽管它们的 CP 之间具有高度的序列同一性,但 ArMV 仅由外寄生线虫 Xiphinema diversicaudatum 传播,而 GFLV 则由线虫 X. index 特异性传播。这两种病毒的传播特异性所涉及的结构决定因素仅映射到其各自的 CP。最近,对 GFLV 的反向遗传学和晶体学研究表明,位于病毒表面的 CP B 结构域中的一个带正电荷的口袋可能是决定其特异性的原因。为了进一步阐明参与传播特异性的外壳蛋白决定因素,我们确定了 ArMV 的 6.5Å分辨率冷冻电镜结构,并使用同源建模和灵活拟合方法构建了其伪原子结构。这项研究使我们能够解析 ArMV CP 的结构,并描绘出 ArMV 衣壳与 RNA 之间的连接。ArMV 和 GFLV CP 的比较显示 B 结构域口袋存在结构差异,从而加强了该区域在病毒传播特异性中的关键作用的假设,并确定了 Nepovirus 衣壳的新的潜在功能域。