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1.
Open Biol ; 14(6): 230252, 2024 Jun.
Article de Anglais | MEDLINE | ID: mdl-38835241

RÉSUMÉ

The Omicron strains of SARS-CoV-2 pose a significant challenge to the development of effective antibody-based treatments as immune evasion has compromised most available immune therapeutics. Therefore, in the 'arms race' with the virus, there is a continuing need to identify new biologics for the prevention or treatment of SARS-CoV-2 infections. Here, we report the isolation of nanobodies that bind to the Omicron BA.1 spike protein by screening nanobody phage display libraries previously generated from llamas immunized with either the Wuhan or Beta spike proteins. The structure and binding properties of three of these nanobodies (A8, H6 and B5-5) have been characterized in detail providing insight into their binding epitopes on the Omicron spike protein. Trimeric versions of H6 and B5-5 neutralized the SARS-CoV-2 variant of concern BA.5 both in vitro and in the hamster model of COVID-19 following nasal administration. Thus, either alone or in combination could serve as starting points for the development of new anti-viral immunotherapeutics.


Sujet(s)
Anticorps neutralisants , Anticorps antiviraux , COVID-19 , SARS-CoV-2 , Anticorps à domaine unique , Glycoprotéine de spicule des coronavirus , SARS-CoV-2/immunologie , Anticorps à domaine unique/immunologie , Anticorps à domaine unique/composition chimique , Anticorps à domaine unique/pharmacologie , Animaux , Anticorps neutralisants/immunologie , Anticorps neutralisants/composition chimique , COVID-19/immunologie , COVID-19/virologie , Glycoprotéine de spicule des coronavirus/immunologie , Glycoprotéine de spicule des coronavirus/composition chimique , Glycoprotéine de spicule des coronavirus/métabolisme , Glycoprotéine de spicule des coronavirus/génétique , Humains , Anticorps antiviraux/immunologie , Camélidés du Nouveau Monde/immunologie , Épitopes/immunologie , Épitopes/composition chimique , Cricetinae , Liaison aux protéines , Modèles moléculaires
2.
J Biol Chem ; 299(11): 105337, 2023 Nov.
Article de Anglais | MEDLINE | ID: mdl-37838175

RÉSUMÉ

Heavy chain-only antibodies can offer advantages of higher binding affinities, reduced sizes, and higher stabilities than conventional antibodies. To address the challenge of SARS-CoV-2 coronavirus, a llama-derived single-domain nanobody C5 was developed previously that has high COVID-19 virus neutralization potency. The fusion protein C5-Fc comprises two C5 domains attached to a glycosylated Fc region of a human IgG1 antibody and shows therapeutic efficacy in vivo. Here, we have characterized the solution arrangement of the molecule. Two 1443 Da N-linked glycans seen in the mass spectra of C5-Fc were removed and the glycosylated and deglycosylated structures were evaluated. Reduction of C5-Fc with 2-mercaptoethylamine indicated three interchain Cys-Cys disulfide bridges within the hinge. The X-ray and neutron Guinier RG values, which provide information about structural elongation, were similar at 4.1 to 4.2 nm for glycosylated and deglycosylated C5-Fc. To explain these RG values, atomistic scattering modeling based on Monte Carlo simulations resulted in 72,737 and 56,749 physically realistic trial X-ray and neutron structures, respectively. From these, the top 100 best-fit X-ray and neutron models were identified as representative asymmetric solution structures, similar to that of human IgG1, with good R-factors below 2.00%. Both C5 domains were solvent exposed, consistent with the functional effectiveness of C5-Fc. Greater disorder occurred in the Fc region after deglycosylation. Our results clarify the importance of variable and exposed C5 conformations in the therapeutic function of C5-Fc, while the glycans in the Fc region are key for conformational stability in C5-Fc.


Sujet(s)
Anticorps antiviraux , Chaines lourdes des immunoglobulines , SARS-CoV-2 , Humains , Immunoglobuline G/composition chimique , Chaines lourdes des immunoglobulines/composition chimique , Modèles moléculaires , Polyosides , Anticorps antiviraux/composition chimique , Anticorps à domaine unique/composition chimique
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