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The Structure of Cucumber Mosaic Virus and Comparison to Cowpea Chlorotic Mottle Virus

机译:黄瓜花叶病毒的结构及与Cow豆绿斑驳病毒的比较

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摘要

The structure of cucumber mosaic virus (CMV; strain Fny) has been determined to a 3.2-Å resolution using X-ray crystallography. Despite the fact that CMV has only 19% capsid protein sequence identity (34% similarity) to cowpea chlorotic mottle virus (CCMV), the core structures of these two members of the Bromoviridae family are highly homologous. As suggested by a previous low-resolution structural study, the 305-Å diameter (maximum) of CMV is ∼12 Å larger than that of CCMV. In CCMV, the structures of the A, B, and C subunits are nearly identical except in their N termini. In contrast, the structures of two loops in subunit A of CMV differ from those in B and C. These loops are 6 and 7 residues longer than the analogous regions in CCMV. Unlike that of CCMV, the capsid of CMV does not undergo swelling at pH 7.0 and is stable at pH 9.0. This may be partly due to the fact that the N termini of the B and C subunits form a unique bundle of six amphipathic helices oriented down into the virion core at the threefold axes. In addition, while CCMV has a cluster of aspartic acid residues at the quasi-threefold axis that are proposed to bind metal in a pH-dependent manner, this cluster is replaced by complementing acids and bases in CMV. Finally, this structure clearly demonstrates that the residues important for aphid transmission lie at the outermost portion of the βH-βI loop and yields details of the portions of the virus that are hypothesized to mediate binding to aphid mouthparts.
机译:黄瓜花叶病毒(CMV;品系Fny)的结构已使用X射线晶体学测定为3.2-Å分辨率。尽管CMV与cow豆褪绿斑驳病毒(CCMV)仅具有19%的衣壳蛋白序列同一性(34%相似性),但Bromoviridae家族的这两个成员的核心结构是高度同源的。正如先前的低分辨率结构研究所建议的那样,CMV的305-Å直径(最大)比CCMV的大12 12。在CCMV中,A,B和C亚基的结构除了在N末端外几乎相同。相反,CMV的亚基A中的两个环结构不同于B和C中的环。这些环比CCMV中的类似区域长6和7个残基。与CCMV不同,CMV的衣壳在pH 7.0时不溶胀,在pH 9.0时稳定。这可能部分是由于B和C亚单位的N末端形成了一个独特的束,该束由六个三亲性螺旋组成,这些螺旋在三重轴上向下定向到病毒体核心中。此外,尽管CCMV在准三倍轴上有一簇天冬氨酸残基,被提议以pH依赖的方式结合金属,但该簇被CMV中的互补酸和碱所取代。最后,该结构清楚地表明,对于蚜虫传播而言重要的残基位于βH-βI环的最外层,并产生了假定介导与蚜虫口器结合的病毒部分的详细信息。

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