A safe and convenient pseudovirus-based inhibition assay to detect neutralizing antibodies and screen for viral entry inhibitors against the novel human coronavirus MERS-CoV
Безопасный и удобный псевдовирусный ингибиционный тест для выявления нейтрализующих антител и скрининга ингибиторов проникновения вируса против нового коронавируса человека MERS-CoV
2013-08-26
SCID: 54.1/cn6ahzm8
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MERS-CoV pseudovirusdipeptidyl peptidase-4 (DPP4)neutralizing antibodiespseudovirus-based inhibition assayviral entry inhibitors
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Abstract (AI)
BACKGROUND: Evidence points to the emergence of a novel human coronavirus, Middle East respiratory syndrome coronavirus (MERS-CoV), which causes a severe acute respiratory syndrome (SARS)-like disease. In response, the development of effective vaccines and therapeutics remains a clinical priority. To accomplish this, it is necessary to evaluate neutralizing antibodies and screen for MERS-CoV entry inhibitors. METHODS: In this study, we produced a pseudovirus bearing the full-length spike (S) protein of MERS-CoV in the Env-defective, luciferase-expressing HIV-1 backbone. We then established a pseudovirus-based inhibition assay to detect neutralizing antibodies and anti-MERS-CoV entry inhibitors. RESULTS: Our results demonstrated that the generated MERS-CoV pseudovirus allows for single-cycle infection of a variety of cells expressing dipeptidyl peptidase-4 (DPP4), the confirmed receptor for MERS-CoV. Consistent with the results from a live MERS-CoV-based inhibition assay, the antisera of mice vaccinated with a recombinant protein containing receptor-binding domain (RBD, residues 377-662) of MERS-CoV S fused with Fc of human IgG exhibited neutralizing antibody response against infection of MERS-CoV pseudovirus. Furthermore, one small molecule HIV entry inhibitor targeting gp41 (ADS-J1) and the 3-hydroxyphthalic anhydride-modified human serum albumin (HP-HSA) could significantly inhibit MERS-CoV pseudovirus infection. CONCLUSION: Taken together, the established MERS-CoV inhibition assay is a safe and convenient pseudovirus-based alternative to BSL-3 live-virus restrictions and can be used to rapidly screen MERS-CoV entry inhibitors, as well as evaluate vaccine-induced neutralizing antibodies against the highly pathogenic MERS-CoV.
Key Findings
1
A pseudovirus carrying the full-length MERS-CoV spike in an Env-defective, luciferase-expressing HIV-1 backbone was successfully generated.
2
Antisera from mice immunized with an MERS-CoV spike RBD-Fc recombinant protein neutralized MERS-CoV pseudovirus infection, consistent with live-virus assay results.
3
The HIV entry inhibitor ADS-J1 and modified human serum albumin HP-HSA significantly inhibited MERS-CoV pseudovirus infection.
4
The MERS-CoV pseudovirus mediated single-cycle infection in multiple cell types expressing the confirmed receptor DPP4.
5
The assay provides a safer, convenient alternative to BSL-3 live-virus testing for evaluating vaccine-induced neutralizing antibodies and screening MERS-CoV entry inhibitors.
Research Object
MERS-CoV pseudovirus bearing the full-length spike protein, infecting DPP4-expressing cells
Research Subject
Pseudovirus infection inhibition, including detection of neutralizing antibodies and screening of MERS-CoV entry inhibitors
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2013-08-26
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