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病毒 DNA 包装马达的必需 RNA 环组件的结构与组装。

Structure and assembly of the essential RNA ring component of a viral DNA packaging motor.

机构信息

Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY 14853, USA.

出版信息

Proc Natl Acad Sci U S A. 2011 May 3;108(18):7357-62. doi: 10.1073/pnas.1016690108. Epub 2011 Apr 6.

Abstract

Prohead RNA (pRNA) is an essential component in the assembly and operation of the powerful bacteriophage 29 DNA packaging motor. The pRNA forms a multimeric ring via intermolecular base-pairing interactions between protomers that serves to guide the assembly of the ring ATPase that drives DNA packaging. Here we report the quaternary structure of this rare multimeric RNA at 3.5 Å resolution, crystallized as tetrameric rings. Strong quaternary interactions and the inherent flexibility helped rationalize how free pRNA is able to adopt multiple oligomerization states in solution. These characteristics also allowed excellent fitting of the crystallographic pRNA protomers into previous prohead/pRNA cryo-EM reconstructions, supporting the presence of a pentameric, but not hexameric, pRNA ring in the context of the DNA packaging motor. The pentameric pRNA ring anchors itself directly to the phage prohead by interacting specifically with the fivefold symmetric capsid structures that surround the head-tail connector portal. From these contacts, five RNA superhelices project from the pRNA ring, where they serve as scaffolds for binding and assembly of the ring ATPase, and possibly mediate communication between motor components. Construction of structure-based designer pRNAs with little sequence similarity to the wild-type pRNA were shown to fully support the packaging of 29 DNA.

摘要

Prohead RNA (pRNA) 是强大的噬菌体 29 DNA 包装马达组装和运行的重要组成部分。pRNA 通过亚基之间的分子间碱基配对相互作用形成多聚体环,该环用于指导驱动 DNA 包装的环 ATP 酶的组装。在这里,我们以 3.5Å 的分辨率报告了这种罕见的多聚体 RNA 的四级结构,其结晶为四聚体环。强的四级相互作用和固有灵活性有助于解释游离 pRNA 如何能够在溶液中采用多种寡聚化状态。这些特性还允许将晶体学 pRNA 亚基极好地拟合到之前的头部/pRNA 冷冻电镜重建中,支持 DNA 包装马达中存在五聚体而不是六聚体 pRNA 环。五聚体 pRNA 环通过与环绕头部-尾部连接体门户的五重对称衣壳结构特异性相互作用,直接锚定在噬菌体头部。从这些接触中,五个 RNA 超螺旋从 pRNA 环中伸出,在那里它们充当结合和组装环 ATP 酶的支架,并可能介导马达组件之间的通信。构建与野生型 pRNA 几乎没有序列相似性的基于结构的设计 pRNA 被证明可以完全支持 29 DNA 的包装。

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