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首页> 外文期刊>Journal of Molecular Biology >X-ray crystal structure of the rotavirus inner capsid particle at 3.8 A resolution.
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X-ray crystal structure of the rotavirus inner capsid particle at 3.8 A resolution.

机译:轮状病毒内衣壳颗粒的X射线晶体结构为3.8 A分辨率。

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The rotavirus inner capsid particle, known as the "double-layered particle" (DLP), is the "payload" delivered into a cell in the process of viral infection. Its inner and outer protein layers, composed of viral protein (VP) 2 and VP6, respectively, package the 11 segments of the double-stranded RNA (dsRNA) of the viral genome, as well as about the same number of polymerase molecules (VP1) and capping-enzyme molecules (VP3). We have determined the crystal structure of the bovine rotavirus DLP. There is one full particle (outer diameter approximately 700 A) in the asymmetric unit of the P2(1)2(1)2(1) unit cell of dimensions a=740 A, b=1198 A, and c=1345 A. A three-dimensional reconstruction from electron cryomicroscopy was used as a molecular replacement model for initial phase determination to about 18.5 A resolution, and the 60-fold redundancy of icosahedral particle symmetry allowed phases to be extended stepwise to the limiting resolution of the data (3.8 A). The structure of a VP6 trimer (determined previously by others) fits the outer layer density with very little adjustment. The T=13 triangulation number of that layer implies that there are four and one-third VP6 trimers per icosahedral asymmetric unit. The inner layer has 120 copies of VP2 and thus 2 copies per icosahedral asymmetric unit, designated VP2A and VP2B. Residues 101-880 fold into a relatively thin principal domain, comma-like in outline, shaped such that only rather modest distortions (concentrated at two "subdomain" boundaries) allow VP2A and VP2B to form a uniform layer with essentially no gaps at the subunit boundaries, except for a modest pore along the 5-fold axis. The VP2 principal domain resembles those of the corresponding shells and homologous proteins in other dsRNA viruses: lambda1 in orthoreoviruses and VP3 in orbiviruses. Residues 1-80 of VP2A and VP2B fold together with four other such pairs into a "5-fold hub" that projects into the DLP interior along the 5-fold axis; residues 81-100 link the 10 polypeptide chains emerging from a 5-fold hub to the N-termini of their corresponding principal domains, clustered into a decameric assembly unit. The 5-fold hub appears to have several distinct functions. One function is to recruit a copy of VP1 (or of a VP1-VP3 complex), potentially along with a segment of plus-strand RNA, as a decamer of VP2 assembles. The second function is to serve as a shaft around which can coil a segment of dsRNA. The third function is to guide nascent mRNA, synthesized in the DLP interior by VP1 and 5'-capped by the action of VP3, out through a 5-fold exit channel. We propose a model for rotavirus particle assembly, based on known requirements for virion formation, together with the structure of the DLP and that of VP1, determined earlier.
机译:轮状病毒内衣壳颗粒,称为“双层颗粒”(DLP),是在病毒感染过程中传递到细胞中的“有效载荷”。它的内部和外部蛋白质层分别由病毒蛋白(VP)2和VP6组成,包装了病毒基因组的双链RNA(dsRNA)的11个片段,以及大约相同数量的聚合酶分子(VP1 )和加帽酶分子(VP3)。我们已经确定了牛轮状病毒DLP的晶体结构。在尺寸为a = 740 A,b = 1198 A和c = 1345 A的P2(1)2(1)2(1)晶胞的不对称单元中有一个完整的粒子(外径约为700 A)。电子冷冻显微镜的三维重建被用作分子替代模型,用于初始相测定,分辨率约为18.5 A,二十面体颗粒对称性的60倍冗余使得相可以逐步扩展至数据的极限分辨率(3.8一种)。 VP6三聚体的结构(之前由其他人确定)适合外层密度,只需很少调整即可。该层的T = 13三角剖分数表示每个二十面体不对称单元有四个和三分之一的VP6三聚体。内层具有120个VP2副本,因此每个二十面体非对称单元2个副本,称为VP2A和VP2B。残基101-880折叠成一个相对较薄的主域,轮廓为逗号形,形状使得只有适度的扭曲(集中在两个“子域”边界处)才能使VP2A和VP2B形成均匀的层,在子单元上基本上没有间隙边界,除了沿5折轴的适度孔隙。 VP2主域类似于其他dsRNA病毒中相应的外壳和同源蛋白的结构域:正支原体病毒中的lambda1和奥比病毒中的VP3。 VP2A和VP2B的残基1-80与其他四对残基一起折叠成“ 5倍集线器”,该“ 5倍集线器”沿5倍轴伸入DLP内部。残基81-100将从5倍集线器出现的10条多肽链连接到它们相应的主要结构域的N-末端,聚结成十聚体组装单元。 5倍集线器似乎具有几个不同的功能。一种功能是募集VP1(或VP1-VP3复合体)的副本,并可能与正链RNA片段一起募集,作为VP2的组装者。第二个功能是充当轴,围绕该轴可以缠绕一段dsRNA。第三个功能是引导通过VP1在DLP内部合成并在VP3的作用下5'封闭的新生mRNA通过5倍退出通道。我们基于病毒体形成的已知要求,以及较早确定的DLP和VP1的结构,提出了轮状病毒颗粒装配的模型。

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