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细菌病毒 Sf6 基因组包装机器的 DNA 识别组件的晶体结构。

Crystal structure of the DNA-recognition component of the bacterial virus Sf6 genome-packaging machine.

机构信息

Department of Molecular Biosciences, University of Kansas, 1200 Sunnyside Avenue, Lawrence, KS 66045, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Feb 2;107(5):1971-6. doi: 10.1073/pnas.0908569107. Epub 2010 Jan 19.

Abstract

In herpesviruses and many bacterial viruses, genome-packaging is a precisely mediated process fulfilled by a virally encoded molecular machine called terminase that consists of two protein components: A DNA-recognition component that defines the specificity for packaged DNA, and a catalytic component that provides energy for the packaging reaction by hydrolyzing ATP. The terminase docks onto the portal protein complex embedded in a single vertex of a preformed viral protein shell called procapsid, and pumps the viral DNA into the procapsid through a conduit formed by the portal. Here we report the 1.65 A resolution structure of the DNA-recognition component gp1 of the Shigella bacteriophage Sf6 genome-packaging machine. The structure reveals a ring-like octamer formed by interweaved protein monomers with a highly extended fold, embracing a tunnel through which DNA may be translocated. The N-terminal DNA-binding domains form the peripheral appendages surrounding the octamer. The central domain contributes to oligomerization through interactions of bundled helices. The C-terminal domain forms a barrel with parallel beta-strands. The structure reveals a common scheme for oligomerization of terminase DNA-recognition components, and provides insights into the role of gp1 in formation of the packaging-competent terminase complex and assembly of the terminase with the portal, in which ring-like protein oligomers stack together to form a continuous channel for viral DNA translocation.

摘要

在疱疹病毒和许多细菌病毒中,基因组包装是一个精确介导的过程,由一种称为末端酶的病毒编码分子机器完成,它由两个蛋白质组件组成:一个 DNA 识别组件,定义了包装 DNA 的特异性,和一个催化组件,通过水解 ATP 为包装反应提供能量。末端酶与嵌入在称为原衣壳的预形成病毒蛋白壳的单个顶点中的门蛋白复合物对接,并通过门形成的导管将病毒 DNA 泵入原衣壳。在这里,我们报告了 Shigella 噬菌体 Sf6 基因组包装机器末端酶的 DNA 识别组件 gp1 的 1.65 A 分辨率结构。该结构揭示了一个由交织的蛋白质单体形成的环形八聚体,具有高度伸展的折叠,包围着一个 DNA 可能通过的隧道。N 端 DNA 结合结构域形成围绕八聚体的外围附属物。中央结构域通过束状螺旋的相互作用有助于寡聚化。C 端结构域形成带有平行β-链的桶状结构。该结构揭示了末端酶 DNA 识别组件寡聚化的通用方案,并深入了解了 gp1 在形成有包装能力的末端酶复合物和末端酶与门的组装中的作用,其中环形蛋白质寡聚体堆叠在一起,形成病毒 DNA 易位的连续通道。

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