A MERS-CoV antibody neutralizes a pre-emerging group 2c bat coronavirus.

Longping V Tse1 Yixuan J Hou2 Elizabeth McFadden3 Rhianna E Lee4 Trevor D Scobey2 Sarah R Leist2 David R Martinez2 Rita M Meganck1 Alexandra Schäfer2 Boyd L Yount2 Teresa Mascenik4 John M Powers2 Scott H Randell4 Yi Zhang5 Lingshu Wang5 John Mascola5 Jason S McLellan3 Ralph S Baric2
Affiliations 5 institutions
  1. Department of Molecular Microbiology and Immunology, Saint Louis University, St. Louis, MO 63014, USA.
  2. Department of Epidemiology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
  3. Department of Molecular Biosciences, University of Texas at Austin, Austin, TX 78712, USA.
  4. Marsico Lung Institute, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
  5. National Institute of Allergy and Infectious Disease, National Institute of Health, Bethesda, MD 20892, USA.

Abstract

The repeated emergence of zoonotic human betacoronaviruses (β-CoVs) dictates the need for broad therapeutics and conserved epitope targets for countermeasure design. Middle East respiratory syndrome (MERS)-related coronaviruses (CoVs) remain a pressing concern for global health preparedness. Using metagenomic sequence data and CoV reverse genetics, we recovered a full-length wild-type MERS-like BtCoV/li/GD/2014-422 (BtCoV-422) recombinant virus, as well as two reporter viruses, and evaluated their human emergence potential and susceptibility to currently available countermeasures. Similar to MERS-CoV, BtCoV-422 efficiently used human and other mammalian dipeptidyl peptidase protein 4 (DPP4) proteins as entry receptors and an alternative DPP4-independent infection route in the presence of exogenous proteases. BtCoV-422 also replicated efficiently in primary human airway, lung endothelial, and fibroblast cells, although less efficiently than MERS-CoV. However, BtCoV-422 shows minor signs of infection in 288/330 human DPP4 transgenic mice. Several broad CoV antivirals, including nucleoside analogs and 3C-like/Mpro protease inhibitors, demonstrated potent inhibition against BtCoV-422 in vitro. Serum from mice that received a MERS-CoV mRNA vaccine showed reduced neutralizing activity against BtCoV-422. Although most MERS-CoV-neutralizing monoclonal antibodies (mAbs) had limited activity, one anti-MERS receptor binding domain mAb, JC57-11, neutralized BtCoV-422 potently. A cryo-electron microscopy structure of JC57-11 in complex with BtCoV-422 spike protein revealed the mechanism of cross-neutralization involving occlusion of the DPP4 binding site, highlighting its potential as a broadly neutralizing mAb for group 2c CoVs that use DPP4 as a receptor. These studies provide critical insights into MERS-like CoVs and provide candidates for countermeasure development.

Supporting text Virus Host Location
Chiroptera 371 Coronavirus Infections 171 Middle East Respiratory Syndrome Coronavirus 68 Animals 1948 Antibodies, Monoclonal 26 Cryoelectron Microscopy 37 Dipeptidyl Peptidase 4 32 Humans 1440 Mice 253

Evidence records

2 total
Experimental Infection
1 records · 1 evidence types
Evidence type
1 records
OVE7387
Key finding

BtCoV-422 caused only minor signs of infection in human DPP4 transgenic mice, indicating limited pathogenicity in vivo.

Virus
Host
Location
Not specified
Supporting text

BtCoV-422 shows minor signs of infection in 288/330 human DPP4 transgenic mice.

Method
controlled inoculation of transgenic mice | clinical observation of infection signs
Experimental system
human DPP4 transgenic mouse model
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE7385
Key finding

BtCoV-422 efficiently used human and other mammalian dipeptidyl peptidase protein 4 (DPP4) proteins as entry receptors, similar to MERS-CoV, and also exhibited an alternative DPP4-independent entry route in the presence of exogenous proteases.

Virus
Host
Location
Not specified
Supporting text

Similar to MERS-CoV, BtCoV-422 efficiently used human and other mammalian dipeptidyl peptidase protein 4 (DPP4) proteins as entry receptors and an alternative DPP4-independent infection route in the presence of exogenous proteases.

Method
virus entry assays | cell infection experiments
Receptors
dipeptidyl peptidase protein 4 (DPP4)
Host factors
exogenous proteases