Publication | Open Access
A molecular pore spans the double membrane of the coronavirus replication organelle
533
Citations
43
References
2020
Year
Viral ReplicationSynthetic VirologyMolecular BiologyCytoskeletonViral Structural ProteinVirus StructureCoronavirus Genome ReplicationCoronavirus ReplicationDouble MembraneBiophysicsVirologyMembrane BiologyCell BiologyStructural BiologyCoronavirus Replication OrganelleMolecular PoreMolecular VirologyViral Rna SynthesisMedicineOrganelle Biology
Coronavirus genome replication is associated with virus-induced cytosolic double-membrane vesicles, which may provide a tailored microenvironment for viral RNA synthesis in the infected cell. However, it is unclear how newly synthesized genomes and messenger RNAs can travel from these sealed replication compartments to the cytosol to ensure their translation and the assembly of progeny virions. In this study, we used cellular cryo-electron microscopy to visualize a molecular pore complex that spans both membranes of the double-membrane vesicle and would allow export of RNA to the cytosol. A hexameric assembly of a large viral transmembrane protein was found to form the core of the crown-shaped complex. This coronavirus-specific structure likely plays a key role in coronavirus replication and thus constitutes a potential drug target.
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