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双链RNA病毒中特定亚基相互作用的表征:φ6原衣壳的拉曼差光谱

Characterization of subunit-specific interactions in a double-stranded RNA virus: Raman difference spectroscopy of the phi6 procapsid.

作者信息

Benevides James M, Juuti Jarmo T, Tuma Roman, Bamford Dennis H, Thomas George J

机构信息

Division of Cell Biology and Biophysics, School of Biological Sciences, University of Missouri-Kansas City, Kansas City, MO 64110, USA.

出版信息

Biochemistry. 2002 Oct 8;41(40):11946-53. doi: 10.1021/bi0201623.

Abstract

The icosahedral core of a double-stranded (ds) RNA virus hosts RNA-dependent polymerase activity and provides the molecular machinery for RNA packaging. The stringent requirements of dsRNA metabolism may explain the similarities observed in core architecture among a broad spectrum of dsRNA viruses, from the mammalian rotaviruses to the Pseudomonas bacteriophage phi6. Although the structure of the assembled core has been described in atomic detail for Reoviridae (blue tongue virus and reovirus), the molecular mechanism of assembly has not been characterized in terms of conformational changes and key interactions of protein constituents. In the present study, we address such questions through the application of Raman spectroscopy to an in vitro core assembly system--the procapsid of phi6. The phi6 procapsid, which comprises multiple copies of viral proteins P1 (copy number 120), P2 (12), P4 (72), and P7 (60), represents a precursor of the core that is devoid of RNA. Raman signatures of the procapsid, its purified recombinant core protein components, and purified sub-assemblies lacking either one or two of the protein components have been obtained and interpreted. The major procapsid protein (P1), which forms the skeletal frame of the core, is an elongated and monomeric molecule of high alpha-helical content. The fold of the core RNA polymerase (P2) is also mostly alpha-helical. On the other hand, the folds of both the procapsid accessory protein (P7) and RNA-packaging ATPase (P4) are of the alpha/beta type. Raman difference spectra show that conformational changes occur upon interaction of P1 with either P4 or P7 in the procapsid. These changes involve substantial ordering of the polypeptide backbone. Conversely, conformations of procapsid subunits are not significantly affected by interactions with P2. An assembly model is proposed in which P1 induces alpha-helix in P4 during formation of the nucleation complex. Subsequently, the partially disordered P7 subunit is folded within the context of the procapsid shell.

摘要

双链(ds)RNA病毒的二十面体核心具有依赖RNA的聚合酶活性,并为RNA包装提供分子机制。dsRNA代谢的严格要求可能解释了从哺乳动物轮状病毒到假单胞菌噬菌体phi6等广泛的dsRNA病毒在核心结构上观察到的相似性。尽管呼肠孤病毒科(蓝舌病毒和呼肠孤病毒)的组装核心结构已在原子水平上详细描述,但组装的分子机制尚未根据蛋白质成分的构象变化和关键相互作用进行表征。在本研究中,我们通过将拉曼光谱应用于体外核心组装系统——phi6原衣壳,来解决此类问题。phi6原衣壳由病毒蛋白P1(拷贝数120)、P2(12)、P4(72)和P7(60)的多个拷贝组成,代表不含RNA的核心前体。已获得并解释了原衣壳、其纯化的重组核心蛋白成分以及缺少一种或两种蛋白成分的纯化亚组装体的拉曼特征。形成核心骨架的主要原衣壳蛋白(P1)是一种具有高α-螺旋含量的细长单体分子。核心RNA聚合酶(P2)的折叠也主要是α-螺旋。另一方面,原衣壳辅助蛋白(P7)和RNA包装ATP酶(P4)的折叠都是α/β型。拉曼差异光谱表明,在原衣壳中P1与P4或P7相互作用时会发生构象变化。这些变化涉及多肽主链的大量有序排列。相反,原衣壳亚基的构象不受与P2相互作用的显著影响。提出了一种组装模型,其中P1在成核复合物形成过程中诱导P4中的α-螺旋。随后,部分无序的P7亚基在原衣壳壳的背景下折叠。

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