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SARS-CoV-2 Assembly and Egress Pathway Revealed by Correlative Multi-modal Multi-scale Cryo-imaging
Luiza Mendonca; Andrew Howe; James B Gilchrist; Dapeng Sun; Michael Knight; Laura C Zanetti-Domingues; Benji Bateman; Anna-Sophia Krebs; Long Chen; Julika Radecke; Yuewen Sheng; Vivian D Li; Tao Ni; Ilias Kounatidis; Mohamed A Koronfel; Marta Szynkiewicz; Maria Harkiolaki; Marisa L Martin-Fernandez; William James; Peijun Zhang.
Afiliación
  • Luiza Mendonca; University of Oxford
  • Andrew Howe; Diamond Light Source
  • James B Gilchrist; Diamond Light Source
  • Dapeng Sun; University of Oxford
  • Michael Knight; University of Oxford
  • Laura C Zanetti-Domingues; Science and Technology Facility Council
  • Benji Bateman; Science and Technology Facility Council
  • Anna-Sophia Krebs; University of Oxford
  • Long Chen; University of Oxford
  • Julika Radecke; Diamond Light Source
  • Yuewen Sheng; Diamond Light Source
  • Vivian D Li; University of Cambridge
  • Tao Ni; University of Oxford
  • Ilias Kounatidis; Diamond Light Source
  • Mohamed A Koronfel; Diamond Light Source
  • Marta Szynkiewicz; Science and Technology Facility Council
  • Maria Harkiolaki; Diamond Light Source
  • Marisa L Martin-Fernandez; Science and Technology Facility Council
  • William James; University of Oxford
  • Peijun Zhang; University of Oxford
Preprint en En | PREPRINT-BIORXIV | ID: ppbiorxiv-370239
ABSTRACT
Since the outbreak of the SARS-CoV-2 pandemic, there have been intense structural studies on purified recombinant viral components and inactivated viruses. However, investigation of the SARS-CoV-2 infection in the native cellular context is scarce, and there is a lack of comprehensive knowledge on SARS-CoV-2 replicative cycle. Understanding the genome replication, assembly and egress of SARS-CoV-2, a multistage process that involves different cellular compartments and the activity of many viral and cellular proteins, is critically important as it bears the means of medical intervention to stop infection. Here, we investigated SARS-CoV-2 replication in Vero cells under the near-native frozen-hydrated condition using a unique correlative multi-modal, multi-scale cryo-imaging approach combining soft X-ray cryo-tomography and serial cryoFIB/SEM volume imaging of the entire SARS-CoV-2 infected cell with cryo-electron tomography (cryoET) of cellular lamellae and cell periphery, as well as structure determination of viral components by subtomogram averaging. Our results reveal at the whole cell level profound cytopathic effects of SARS-CoV-2 infection, exemplified by a large amount of heterogeneous vesicles in the cytoplasm for RNA synthesis and virus assembly, formation of membrane tunnels through which viruses exit, and drastic cytoplasm invasion into nucleus. Furthermore, cryoET of cell lamellae reveals how viral RNAs are transported from double-membrane vesicles where they are synthesized to viral assembly sites; how viral spikes and RNPs assist in virus assembly and budding; and how fully assembled virus particles exit the cell, thus stablishing a model of SARS-CoV-2 genome replication, virus assembly and egress pathways.
Licencia
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Texto completo: 1 Colección: 09-preprints Base de datos: PREPRINT-BIORXIV Idioma: En Año: 2020 Tipo del documento: Preprint
Texto completo: 1 Colección: 09-preprints Base de datos: PREPRINT-BIORXIV Idioma: En Año: 2020 Tipo del documento: Preprint