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水疱性口炎病毒 RNA 聚合酶的分子结构。

Molecular architecture of the vesicular stomatitis virus RNA polymerase.

机构信息

Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston MA 02115, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Nov 16;107(46):20075-80. doi: 10.1073/pnas.1013559107. Epub 2010 Nov 1.

Abstract

Nonsegmented negative-strand (NNS) RNA viruses initiate infection by delivering into the host cell a highly specialized RNA synthesis machine comprising the genomic RNA completely encapsidated by the viral nucleocapsid protein and associated with the viral polymerase. The catalytic core of this protein-RNA complex is a 250-kDa multifunctional large (L) polymerase protein that contains enzymatic activities for nucleotide polymerization as well as for each step of mRNA cap formation. Working with vesicular stomatitis virus (VSV), a prototype of NNS RNA viruses, we used negative stain electron microscopy (EM) to obtain a molecular view of L, alone and in complex with the viral phosphoprotein (P) cofactor. EM analysis, combined with proteolytic digestion and deletion mapping, revealed the organization of L into a ring domain containing the RNA polymerase and an appendage of three globular domains containing the cap-forming activities. The capping enzyme maps to a globular domain, which is juxtaposed to the ring, and the cap methyltransferase maps to a more distal and flexibly connected globule. Upon P binding, L undergoes a significant rearrangement that may reflect an optimal positioning of its functional domains for transcription. The structural map of L provides new insights into the interrelationship of its various domains, and their rearrangement on P binding that is likely important for RNA synthesis. Because the arrangement of conserved regions involved in catalysis is homologous, the structural insights obtained for VSV L likely extend to all NNS RNA viruses.

摘要

非分段负链 (NNS) RNA 病毒通过将一个高度专业化的 RNA 合成机器递送到宿主细胞中而引发感染,该机器由完全被病毒核衣壳蛋白包裹的基因组 RNA 以及与病毒聚合酶相关的 RNA 组成。该蛋白-RNA 复合物的催化核心是一个 250kDa 的多功能大型 (L) 聚合酶蛋白,它包含核苷酸聚合以及 mRNA 帽形成的每一步的酶活性。我们使用水疱性口炎病毒 (VSV) 作为 NNS RNA 病毒的原型,使用负染色电子显微镜 (EM) 获得了 L 的分子视图,单独存在和与病毒磷蛋白 (P) 辅助因子形成复合物。EM 分析结合蛋白水解消化和缺失作图,揭示了 L 的组织形式为包含 RNA 聚合酶的环结构域和包含帽形成活性的三个球状结构域的附属物。加帽酶映射到一个球状结构域,该结构域与环相邻,帽甲基转移酶映射到一个更遥远和灵活连接的球。结合 P 后,L 发生了显著的重排,这可能反映了其功能域在转录过程中的最佳定位。L 的结构图谱为其各个结构域之间的相互关系以及与 P 结合时的重排提供了新的见解,这对于 RNA 合成可能很重要。由于涉及催化的保守区域的排列是同源的,因此对于 VSV L 获得的结构见解可能扩展到所有 NNS RNA 病毒。

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