Mechanism of membrane perforation in rotavirus cell entry
de Sautu, M.; Leistner, C.; Kirchhausen, T.; Jenni, S.; Harrison, S. C.
Show abstract
Infectious cell entry by non-enveloped viruses requires delivery of the viral genome -- in many cases enclosed within a large, subviral particle -- across the membrane of an intracellular compartment. Rotaviruses and other double-strand RNA (dsRNA) viruses introduce into their target cells an inner capsid particle, roughly 700 [A] in diameter, that does not uncoat further but instead extrudes capped viral mRNA by virtue of RNA-dependent RNA polymerase and capping activities within it. The delivery agent is an outer protein layer of the virion. We describe here use of cryogenic electron tomography (cryo-ET) to visualize the full course of rhesus rotavirus (RRV) entry, from cell attachment and inward budding of the virion to arrival of the subviral particle in the cytosol. The cryo-tomograms and subtomogram averaging of classified subparticles have enabled us to link high-resolution structures of the virion and its components with time series from live-cell fluorescence microscopy and thus to outline the molecular mechanism of each step in the entry process, including the hitherto elusive membrane perforation step needed for transfer of the subviral particle into the cytosol.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Structural maturation of the matrix lattice is not required for HIV-1 particle infectivity 96%
- Trans-synaptic assemblies link synaptic vesicles and neuroreceptors 95%
- The Viral AlphaFold Database of monomers and homodimers reveals conserved protein folds in viruses of bacteria, archaea, and eukaryotes 94%
Similar papers in this journal
- Electron tomography visualization of HIV-1 fusion with target cells using fusion inhibitors to trap the pre-hairpin intermediate 96%
- The giant Mimivirus 1.2 Mb genome is elegantly organized into a 30 nm helical protein shield 96%
- In vivo imaging of retrovirus infection reveals a role for Siglec-1/CD169 in multiple routes of transmission 95%
Similar papers in this journal
- Nonlytic cellular release of hepatitis A virus requires dual capsid recruitment of the ESCRT-associated Bro1 domain proteins HD-PTP and ALIX 96%
- Calicivirus assembly and stability are mediated by the N-terminal domain of the capsid protein with the involvement of the viral genome 96%
- {-}{-}{-}{-}{-}{-}{-}{-}RNA structures within Venezuelan equine encephalitis virus E1 alter macrophage replication fitness and contribute to viral emergence 95%
Similar papers in this journal
- High-resolution view of the type III secretion export apparatus in situ reveals membrane remodeling and a secretion pathway 96%
- Structural insights into HIV-1 polyanion-dependent capsid lattice formation revealed by singleparticle cryo-EM 96%
- In situ architecture and membrane fusion of SARS-CoV-2 Delta variant 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.