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Transient lipid-bound states of spike protein heptad repeats provide insights into SARS-CoV-2 membrane fusion.


ABSTRACT: Entry of SARS-CoV-2 into a host cell is mediated by spike, a class I viral fusion protein responsible for merging the viral and host cell membranes. Recent studies have revealed atomic-resolution models for both the postfusion 6-helix bundle (6HB) and the prefusion state of spike. However, a mechanistic understanding of the molecular basis for the intervening structural transition, important for the design of fusion inhibitors, has remained elusive. Using nuclear magnetic resonance spectroscopy and other biophysical methods, we demonstrate the presence of α-helical, membrane-bound, intermediate states of spike’s heptad repeat (HR1 and HR2) domains that are embedded at the lipid-water interface while in a slow dynamic equilibrium with the postfusion 6HB state. These results support a model

SUBMITTER: Chiliveri SC 

PROVIDER: S-EPMC8500521 | biostudies-literature | 2021 Oct

REPOSITORIES: biostudies-literature

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