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一种含膜双链DNA病毒基因组包装过程的结构模型。

A structural model of the genome packaging process in a membrane-containing double stranded DNA virus.

作者信息

Hong Chuan, Oksanen Hanna M, Liu Xiangan, Jakana Joanita, Bamford Dennis H, Chiu Wah

机构信息

Graduate Program in Structural and Computational Biology and Molecular Biophysics, Baylor College of Medicine, Houston, Texas, United States of America; Verna and Marrs McLean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, Texas, United States of America.

Department of Biosciences and Institute of Biotechnology, University of Helsinki, Helsinki, Finland.

出版信息

PLoS Biol. 2014 Dec 16;12(12):e1002024. doi: 10.1371/journal.pbio.1002024. eCollection 2014 Dec.

Abstract

Two crucial steps in the virus life cycle are genome encapsidation to form an infective virion and genome exit to infect the next host cell. In most icosahedral double-stranded (ds) DNA viruses, the viral genome enters and exits the capsid through a unique vertex. Internal membrane-containing viruses possess additional complexity as the genome must be translocated through the viral membrane bilayer. Here, we report the structure of the genome packaging complex with a membrane conduit essential for viral genome encapsidation in the tailless icosahedral membrane-containing bacteriophage PRD1. We utilize single particle electron cryo-microscopy (cryo-EM) and symmetry-free image reconstruction to determine structures of PRD1 virion, procapsid, and packaging deficient mutant particles. At the unique vertex of PRD1, the packaging complex replaces the regular 5-fold structure and crosses the lipid bilayer. These structures reveal that the packaging ATPase P9 and the packaging efficiency factor P6 form a dodecameric portal complex external to the membrane moiety, surrounded by ten major capsid protein P3 trimers. The viral transmembrane density at the special vertex is assigned to be a hexamer of heterodimer of proteins P20 and P22. The hexamer functions as a membrane conduit for the DNA and as a nucleating site for the unique vertex assembly. Our structures show a conformational alteration in the lipid membrane after the P9 and P6 are recruited to the virion. The P8-genome complex is then packaged into the procapsid through the unique vertex while the genome terminal protein P8 functions as a valve that closes the channel once the genome is inside. Comparing mature virion, procapsid, and mutant particle structures led us to propose an assembly pathway for the genome packaging apparatus in the PRD1 virion.

摘要

病毒生命周期中的两个关键步骤是基因组衣壳化以形成感染性病毒粒子以及基因组释放以感染下一个宿主细胞。在大多数二十面体双链(ds)DNA病毒中,病毒基因组通过一个独特的顶点进入和离开衣壳。含有内膜的病毒具有额外的复杂性,因为基因组必须穿过病毒膜双层。在这里,我们报道了无尾二十面体含膜噬菌体PRD1中病毒基因组衣壳化所必需的具有膜通道的基因组包装复合物的结构。我们利用单颗粒冷冻电子显微镜(cryo-EM)和无对称性图像重建来确定PRD1病毒粒子、原衣壳和包装缺陷突变体粒子的结构。在PRD1的独特顶点处,包装复合物取代了规则的五重结构并穿过脂质双层。这些结构表明,包装ATP酶P9和包装效率因子P6在膜部分外部形成一个十二聚体门户复合物,被十个主要衣壳蛋白P3三聚体包围。特殊顶点处的病毒跨膜密度被确定为蛋白质P20和P22异二聚体的六聚体。该六聚体作为DNA的膜通道并作为独特顶点组装的成核位点。我们的结构显示,在P9和P6被募集到病毒粒子后,脂质膜发生了构象改变。然后P8-基因组复合物通过独特顶点被包装到原衣壳中,而基因组末端蛋白P8起到阀门的作用,一旦基因组进入就关闭通道。比较成熟病毒粒子、原衣壳和突变体粒子的结构使我们提出了PRD1病毒粒子中基因组包装装置的组装途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af4c/4267777/3c0453b265c7/pbio.1002024.g001.jpg

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