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JBC Communications
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- Accelerated CommunicationOpen Access
Recombinant SARS-CoV-2 envelope protein traffics to the trans-Golgi network following amphipol-mediated delivery into human cells
Journal of Biological ChemistryVol. 297Issue 2100940Published online: July 5, 2021- James M. Hutchison
- Ricardo Capone
- Dustin D. Luu
- Karan H. Shah
- Arina Hadziselimovic
- Wade D. Van Horn
- and others
Cited in Scopus: 3The severe acute respiratory syndrome coronavirus 2 envelope protein (S2-E) is a conserved membrane protein that is important for coronavirus (CoV) assembly and budding. Here, we describe the recombinant expression and purification of S2-E in amphipol-class amphipathic polymer solutions, which solubilize and stabilize membrane proteins, but do not disrupt membranes. We found that amphipol delivery of S2-E to preformed planar bilayers results in spontaneous membrane integration and formation of viroporin cation channels. - Accelerated Communication Editors' PickOpen Access
Molnupiravir promotes SARS-CoV-2 mutagenesis via the RNA template
Journal of Biological ChemistryVol. 297Issue 1100770Published online: May 10, 2021- Calvin J. Gordon
- Egor P. Tchesnokov
- Raymond F. Schinazi
- Matthias Götte
Cited in Scopus: 117The RNA-dependent RNA polymerase of the severe acute respiratory syndrome coronavirus 2 is an important target in current drug development efforts for the treatment of coronavirus disease 2019. Molnupiravir is a broad-spectrum antiviral that is an orally bioavailable prodrug of the nucleoside analogue β-D-N4-hydroxycytidine (NHC). Molnupiravir or NHC can increase G to A and C to U transition mutations in replicating coronaviruses. These increases in mutation frequencies can be linked to increases in antiviral effects; however, biochemical data of molnupiravir-induced mutagenesis have not been reported.