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Download fileStructure, Dynamics, Receptor Binding, and Antibody Binding of the Fully Glycosylated Full-Length SARS-CoV‑2 Spike Protein in a Viral Membrane
journal contribution
posted on 2021-03-10, 21:13 authored by Yeol Kyo Choi, Yiwei Cao, Martin Frank, Hyeonuk Woo, Sang-Jun Park, Min Sun Yeom, Tristan I. Croll, Chaok Seok, Wonpil ImThe spike (S) protein of severe acute
respiratory syndrome coronavirus
2 (SARS-CoV-2) mediates host cell entry by binding to angiotensin-converting
enzyme 2 (ACE2) and is considered the major target for drug and vaccine
development. We previously built fully glycosylated full-length SARS-CoV-2
S protein models in a viral membrane including both open and closed
conformations of the receptor-binding domain (RBD) and different templates
for the stalk region. In this work, multiple μs-long all-atom
molecular dynamics simulations were performed to provide deeper insights
into the structure and dynamics of S protein and glycan functions.
Our simulations reveal that the highly flexible stalk is composed
of two independent joints and most probable S protein orientations
are competent for ACE2 binding. We identify multiple glycans stabilizing
the open and/or closed states of the RBD and demonstrate that the
exposure of antibody epitopes can be captured by detailed antibody–glycan
clash analysis instead of commonly used accessible surface area analysis
that tends to overestimate the impact of glycan shielding and neglect
possible detailed interactions between glycan and antibodies. Overall,
our observations offer structural and dynamic insights into the SARS-CoV-2
S protein and potentialize for guiding the design of effective antiviral
therapeutics.
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insightACE 2 bindingsyndrome coronavirus 2Viral Membraneangiotensin-converting enzyme 2surface area analysisAntibody BindingSARS-CoV -2 S protein modelsantibody epitopesobservations offerglycan functionsglycan shieldingreceptor-binding domainSARS-CoV -2 S proteinS protein orientationsμ s-long all-atomS proteinvaccine developmentRBDReceptor Bindingdynamics simulations