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Infectious Bursal Disease Virus Capsid Assembly and Maturation by Structural Rearrangements of a Transient Molecular Switch

机译:传染性法氏囊病病毒衣壳组装和成熟的瞬态分子开关的结构重排。

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摘要

Infectious bursal disease virus (IBDV), a double-stranded RNA (dsRNA) virus belonging to the Birnaviridae family, is an economically important avian pathogen. The IBDV capsid is based on a single-shelled T=13 lattice, and the only structural subunits are VP2 trimers. During capsid assembly, VP2 is synthesized as a protein precursor, called pVP2, whose 71-residue C-terminal end is proteolytically processed. The conformational flexibility of pVP2 is due to an amphipathic α-helix located at its C-terminal end. VP3, the other IBDV major structural protein that accomplishes numerous roles during the viral cycle, acts as a scaffolding protein required for assembly control. Here we address the molecular mechanism that defines the multimeric state of the capsid protein as hexamers or pentamers. We used a combination of three-dimensional cryo-electron microscopy maps at or close to subnanometer resolution with atomic models. Our studies suggest that the key polypeptide element, the C-terminal amphipathic α-helix, which acts as a transient conformational switch, is bound to the flexible VP2 C-terminal end. In addition, capsid protein oligomerization is also controlled by the progressive trimming of its C-terminal domain. The coordination of these molecular events correlates viral capsid assembly with different conformations of the amphipathic α-helix in the precursor capsid, as a five-α-helix bundle at the pentamers or an open star-like conformation at the hexamers. These results, reminiscent of the assembly pathway of positive single-stranded RNA viruses, such as nodavirus and tetravirus, add new insights into the evolutionary relationships of dsRNA viruses.
机译:传染性法氏囊病病毒(IBDV)是Birnaviridae家族的一种双链RNA(dsRNA)病毒,是一种经济上重要的禽类病原体。 IBDV衣壳基于单壳T = 13晶格,唯一的结构亚基是VP2三聚体。在衣壳组装过程中,VP2合成为蛋白质前体,称为pVP2,其71个残基的C末端经过蛋白水解处理。 pVP2的构象柔韧性归因于位于其C末端的两亲性α-螺旋。 VP3是另一个IBDV主要结构蛋白,可在病毒周期中发挥多种作用,它是装配控制所需的支架蛋白。在这里,我们讨论将衣壳蛋白的多聚体状态定义为六聚体或五聚体的分子机制。我们使用了原子模型在亚纳米分辨率或接近纳米分辨率的三维低温电子显微镜图的组合。我们的研究表明,关键的多肽元素,即C端两亲性α螺旋,充当瞬时构象开关,与柔性VP2 C端结合。另外,衣壳蛋白的寡聚也通过其C端结构域的逐步修整来控制。这些分子事件的协调将病毒衣壳组装体与前体衣壳中两亲性α-螺旋的不同构象相关联,如在五聚体处为五-α-螺旋束或在六聚体处为开放星形样构象。这些结果使人想起了诸如诺达病毒和四病毒之类的阳性单链RNA病毒的组装途径,为dsRNA病毒的进化关系增添了新见解。

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