Effect of natural and engineered variations on structure and biophysics of SARS-CoV-2 spike

NIH Pandemic-Era Grants

Pandemic Era Grants

2022

Document text

Principal Investigator: Priyamvada  Acharya
Organization: DUKE UNIVERSITY
Fiscal Year: 2022
Award: $762,466
Funding agency: National Institute of Allergy and Infectious Diseases

Effect of natural and engineered variations on structure and biophysics of SARS-CoV-2 spike
 COVID-19, caused by SARS-CoV-2, has devasted global health and economics. Vaccines are being
deployed worldwide to gain control of the pandemic, although emergence of fast-spreading “variants of
concern” (VOCs) have caused concern. Mutations in the spike (S) protein are under scrutiny due to its
essential role in the virus life cycle, and being the dominant target of neutralizing antibodies. Widespread
vaccine hesitancy and the current spread of the Delta variant provide fertile ground for emergence of vaccine-
resistant variants. We and others have shown that variants use a plethora of strategies to modify antibody and
receptor interactive surfaces, and spike conformation, resulting in antibody evasion and greater infectivity.
Over the last two years, utilizing urgent supplement funding from the NIH, we studied the structures of SARS-
CoV-2 S proteins and have established workflows spanning structure, biochemistry, biophysics and
computation. Here we propose to continue the essential work of detangling the effects of variant S protein
mutations, and to enhance our understanding of spike structure to further efforts to predict where the virus is
heading and to inform novel vaccine designs. The scientific premise of this grant is that understanding spike
structure and allostery will provide insights into its function, inform vaccine development, and provide
mechanistic information essential for relating spike structure to beta-CoV replication, evolution, and immune
evasion. The innovations in this grant derive from technologies we have developed for structural analyses of
the S protein: an integrative structural biology pipeline combines cryo-electron microscopy (cryo-EM), Negative
Stain Electron Microscopy (NSEM) and X-ray crystallography, with computational methods, and biochemical
and biophysical analyses to study structural and functional properties of the spike, including furin cleavage,
receptor binding, and antigenicity.

Terms: <2019 novel corona virus><2019 novel coronavirus><2019-nCoV><Antibodies><Antigens><B.1.1.7><B.1.351><B.1.617.2><Biochemical><Biochemistry><Biological><Biological Chemistry><Biophysics><COVID-19><COVID-19 virus><COVID19><COVID19 virus><CV-19><CV19><CoV S protein><CoV glycoprotein S><CoV spike glycoprotein><CoV spike protein><CoV-2><CoV2><Communication><Computing Methodologies><Coronaviridae><Coronavirus><Coronavirus glycoprotein S><Coronavirus spike protein><Cryo-electron Microscopy><Cryoelectron Microscopy><Data><Data Set><Dataset><Delta variant><Electron Cryomicroscopy><Electron Microscopy><Emergencies><Emergency Situation><Engineering><Epitheliasin Gene><Esteroproteases><Evolution><Fc Receptor><Funding><Future><Genetic Alteration><Genetic Change><Genetic defect><Genetics-Mutagenesis><Goals><Grant><Immune Evasion><In Vitro><Kinetics><Lead><Life Cycle><Life Cycle Stages><Link><Measures><Methods><Mink><Molecular><Molecular Configuration><Molecular Conformation><Molecular Stereochemistry><Mutagenesis><Mutagenesis Molecular Biology><Mutation><NIH><National Institutes of Health><Negative Staining><PRSS10><Pathogenesis><Pb element><Peptidases><Peptide Hydrolases><Peptides><Population><Position><Positioning Attribute><Predisposition><Property><Protease Gene><Proteases><Protein Cleavage><Protein Conformation><Proteinases><Proteins><Proteolysis><Proteolytic Enzymes><Protomer><Recurrence><Recurrent><Reporting><Research><Resistance><Resolution><Role><SARS corona virus 2><SARS-CO-V2><SARS-COVID-2><SARS-CoV-2><SARS-CoV-2 B.1.1.7><SARS-CoV-2 B.1.351><SARS-CoV-2 B.1.617.2><SARS-CoV-2 alpha><SARS-CoV-2 beta><SARS-CoV-2 delta><SARS-CoV2><SARS-associated corona virus 2><SARS-associated coronavirus 2><SARS-coronavirus-2><SARS-related corona virus 2><SARS-related coronavirus 2><SARSCoV2><Severe Acute Respiratory Coronavirus 2><Severe Acute Respiratory Distress Syndrome CoV 2><Severe Acute Respiratory Distress Syndrome Corona Virus 2><Severe Acute Respiratory Distress Syndrome Coronavirus 2><Severe Acute Respiratory Syndrome CoV 2><Severe Acute Respiratory Syndrome-associated coronavirus 2><Severe Acute Respiratory Syndrome-related coronavirus 2><Severe acute respiratory syndrome associated corona virus 2><Severe acute respiratory syndrome corona virus 2><Severe acute respiratory syndrome coronavirus 2><Severe acute respiratory syndrome related corona virus 2><Single Crystal Diffraction><Site><South Africa strain><South Africa variant><South African strain><South African variant><Structure><Surface><Susceptibility><TMPRSS2><TMPRSS2 gene><Techniques><Technology><U.K. variant><UK strain><UK variant><United Kingdom variant><United States National Institutes of Health><Vaccine Design><Vaccines><Variant><Variation><Viral><Virus><Work><Wuhan coronavirus><X Ray Crystallographies><X-Ray Crystallography><X-Ray Diffraction Crystallography><X-Ray/Neutron Crystallography><Xray Crystallography><advanced simulation><antibody receptor><base><beta CoV><beta coronavirus><betaCoV><betacoronavirus><biologic><biophysical analysis><biophysical foundation><biophysical principles><biophysical sciences><biophysical studies><combat><computational methodology><computational methods><computational studies><computer based method><computer methods><computer studies><computing method><conformation><conformational state><corona virus><corona virus disease 2019><coronavirus S protein><coronavirus disease 2019><coronavirus disease 2019 virus><coronavirus disease-19><coronavirus disease-19 virus><coronavirus infectious disease-19><coronavirus spike glycoprotein><cryo-EM><cryoEM><design><designing><develop a vaccine><develop vaccines><development of a vaccine><expectation><experiment><experimental research><experimental study><genome mutation><global health><hCoV19><health economics><heavy metal Pb><heavy metal lead><hesitant to vaccination><immunogen><in vivo><innovate><innovation><innovative><insight><life course><nCoV2><neutralizing antibody><new vaccines><next generation vaccines><novel vaccines><pandemic><pandemic disease><protein structure><protein structures><proteins structure><receptor binding><receptor bound><reconstruction><resistant><severe acute respiratory syndrome coronavirus 2 B.1.1.7><severe acute respiratory syndrome coronavirus 2 B.1.351><severe acute respiratory syndrome coronavirus 2 B.1.617.2><social role><structural biology><vaccination hesitancy><vaccine development><vaccine hesitancy><vaccine hesitant><variants of concern><β CoV><β coronavirus><βCoV>