Department of Microbiology, Immunology and Molecular Genetics, University of California at Los Angeles, Los Angeles, CA 90095-7364, USA.
J Mol Biol. 2010 Apr 2;397(3):852-63. doi: 10.1016/j.jmb.2009.12.027. Epub 2009 Dec 28.
Grass carp reovirus (GCRV) is a member of the aquareovirus genus in the Reoviridae family and has a capsid with two shells-a transcription-competent core surrounded by a coat. We report a near-atomic-resolution reconstruction of the GCRV virion by cryo-electron microscopy and single-particle reconstruction. A backbone model of the GCRV virion, including seven conformers of the five capsid proteins making up the 1500 molecules in both the core and the coat, was derived using cryo-electron microscopy density-map-constrained homology modeling and refinement. Our structure clearly showed that the amino-terminal segment of core protein VP3B forms an approximately 120-A-long alpha-helix-rich extension bridging across the icosahedral 2-fold-symmetry-related molecular interface. The presence of this unique structure across this interface and the lack of an external cementing molecule at this location in GCRV suggest a stabilizing role of this extended amino-terminal density. Moreover, part of this amino-terminal extension becomes invisible in the reconstruction of transcription-competent core particles, suggesting its involvement in endogenous viral RNA transcription. Our structure of the VP1 turret represents its open state, and comparison with its related structures at the closed state suggests hinge-like domain movements associated with the mRNA-capping machinery. Overall, this first backbone model of an aquareovirus virion provides a wealth of structural information for understanding the structural basis of GCRV assembly and transcription.
草鱼呼肠孤病毒 (GCRV) 是呼肠孤病毒科的水生动物呼肠孤病毒属的一员,具有双层衣壳的衣壳 - 转录活性核心被外壳包围。我们通过冷冻电镜和单颗粒重建技术报告了 GCRV 病毒粒子的近原子分辨率重建。使用冷冻电镜密度图约束同源建模和精修,从冷冻电镜密度图中推导出 GCRV 病毒粒子的骨架模型,包括构成核心和外壳的 1500 个分子的五个衣壳蛋白的七种构象。我们的结构清楚地表明,核心蛋白 VP3B 的氨基末端片段形成一个约 120-A 长的富含α-螺旋的延伸结构,跨越二十面体 2 倍对称相关的分子界面。这种独特结构在界面上的存在以及在 GCRV 中该位置没有外部胶结分子表明该延伸氨基末端密度具有稳定作用。此外,该氨基末端延伸的一部分在转录活性核心颗粒的重建中变得不可见,表明其参与了内源性病毒 RNA 转录。我们的 VP1 炮塔结构代表其开放状态,与封闭状态的相关结构进行比较表明与 mRNA 加帽机制相关的铰链样结构域运动。总体而言,这种水生动物呼肠孤病毒病毒粒子的第一个骨架模型为理解 GCRV 组装和转录的结构基础提供了丰富的结构信息。