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部分病毒衣壳蛋白的骨架追踪来自电子冷冻显微镜和同源建模。

Backbone trace of partitivirus capsid protein from electron cryomicroscopy and homology modeling.

机构信息

Department of Chemistry and Biochemistry, University of California-San Diego, La Jolla, California 92037, USA.

出版信息

Biophys J. 2010 Jul 21;99(2):685-94. doi: 10.1016/j.bpj.2010.04.058.

Abstract

Most dsRNA viruses have a genome-enclosing capsid that comprises 120 copies of a single coat protein (CP). These 120 CP subunits are arranged as asymmetrical dimers that surround the icosahedral fivefold axes, forming pentamers of dimers that are thought to be assembly intermediates. This scheme is violated, however, in recent structures of two dsRNA viruses, a fungal virus from family Partitiviridae and a rabbit virus from family Picobirnaviridae, both of which have 120 CP subunits organized as dimers of quasisymmetrical dimers. In this study, we report the CP backbone trace of a second fungal partitivirus, determined in this case by electron cryomicroscopy and homology modeling. This virus also exhibits quasisymmetrical CP dimers that are connected by prominent surface arches and stabilized by domain swapping between the two CP subunits. The CP fold is dominated by alpha-helices, although beta-strands mediate several important contacts. A dimer-of-dimers assembly intermediate is again implicated. The disordered N-terminal tail of each CP subunit protrudes into the particle interior and likely interacts with the genome during packaging and/or transcription. These results broaden our understanding of conserved and variable aspects of partitivirus structure and reflect the growing use of electron cryomicroscopy for atomic modeling of protein folds.

摘要

大多数双链 RNA 病毒都有一个包裹基因组的衣壳,由 120 个单一的外壳蛋白 (CP) 组成。这些 120 个 CP 亚基以非对称二聚体的形式排列,围绕二十面体五重轴,形成五聚体二聚体,这些二聚体被认为是组装中间体。然而,这种方案在最近两种双链 RNA 病毒的结构中被打破,一种是真菌病毒家族 Partitiviridae 的病毒,另一种是来自家族 Picobirnaviridae 的兔病毒,它们都有 120 个 CP 亚基以准对称二聚体的二聚体的形式组织。在这项研究中,我们报告了第二种真菌 Partitivirus 的 CP 主干轨迹,该轨迹是通过电子 cryomicroscopy 和同源建模确定的。这种病毒也表现出准对称的 CP 二聚体,这些二聚体通过突出的表面拱连接,并通过两个 CP 亚基之间的结构域交换稳定。CP 折叠由α-螺旋主导,尽管β-链介导了几个重要的接触。再次暗示了二聚体-二聚体组装中间体。每个 CP 亚基的无规 N 端尾部突入颗粒内部,可能在包装和/或转录过程中与基因组相互作用。这些结果拓宽了我们对 Partitivirus 结构保守和可变方面的理解,并反映了电子 cryomicroscopy 在蛋白质折叠的原子建模中越来越多的应用。

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