Electron Microscopy and Methods Group, Université Grenoble Alpes, CNRS, CEA, Institute for Structural Biology, Grenoble, France.
Complexes Macromoléculaires Viraux, Aix-Marseille Université, CNRS, INSERM, AFMB UMR 7257, Marseille, France.
Elife. 2019 Jan 14;8:e43075. doi: 10.7554/eLife.43075.
Negative-strand RNA viruses condense their genome into helical nucleocapsids that constitute essential templates for viral replication and transcription. The intrinsic flexibility of nucleocapsids usually prevents their full-length structural characterisation at high resolution. Here, we describe purification of full-length recombinant metastable helical nucleocapsid of Hantaan virus ( family, order) and determine its structure at 3.3 Å resolution by cryo-electron microscopy. The structure reveals the mechanisms of helical multimerisation via sub-domain exchanges between protomers and highlights nucleotide positions in a continuous positively charged groove compatible with viral genome binding. It uncovers key sites for future structure-based design of antivirals that are currently lacking to counteract life-threatening hantavirus infections. The structure also suggests a model of nucleoprotein-polymerase interaction that would enable replication and transcription solely upon local disruption of the nucleocapsid.
负链 RNA 病毒将其基因组浓缩成螺旋核衣壳,这些核衣壳构成了病毒复制和转录的基本模板。核衣壳的固有柔韧性通常会阻止其全长结构在高分辨率下的完全表征。在这里,我们描述了全长重组汉坦病毒( 科, 目)不稳定螺旋核衣壳的纯化,并通过冷冻电镜确定了其在 3.3 Å 分辨率下的结构。该结构揭示了通过亚结构域在原聚体之间的交换进行螺旋多聚化的机制,并突出了在连续正电荷沟中与病毒基因组结合相容的核苷酸位置。它揭示了针对目前缺乏对抗危及生命的汉坦病毒感染的抗病毒药物的基于结构的设计的关键部位。该结构还提出了核蛋白-聚合酶相互作用的模型,该模型仅在核衣壳的局部破坏时就能够进行复制和转录。