Potent neutralization by antibodies targeting the MPXV A28 protein
Abstract
Abstract Monkeypox virus (MPXV) is the most pathogenic Poxvirus in circulation, yet key viral antigens remain immunologically unexplored. We isolate and characterize a panel of monoclonal antibodies (mAbs) targeting MPXV A28 (OPG153), an important membranal protein present on mature MPXV virions. From male convalescent individuals, we isolate anti-A28 mAbs alongside additional mAbs targeting the A35 and H3 proteins. Anti-A28 mAbs potently neutralize MPXV and Vaccinia virus (VACV) through complement-dependent mechanisms involving C1q and C3 deposition. High-resolution crystal structures of two anti-A28 mAbs, 10M2146 and 8M2110, in complex with VACV A26 reveal two distinct and highly conserved proximal epitopes within the N-terminal domain. Passive transfer of 8M2110 modestly attenuates disease in infected female mice. Moreover, immunization with A28 elicits antigen-specific B cells and robust neutralizing antibody responses and provides protection against lethal VACV challenge. These findings identify MPXV A28 as a promising central target for the induction of neutralizing antibodies and antiviral interventions.
Article Details
Authors (24)
Ron Yefet
Department of Clinical Microbiology and Immunology, Gray Faculty of Medical and Health Sciences, Tel Aviv University
Leandro Battini
Mathieu Hubert
Katya Rakayev
Florence Guivel-Benhassine
Noam Rattner
Françoise Porrot
Lilach Abramovitz
Gilad Ostashinsky
Noam Ben-Shalom
Jeanne Postal
Ksenia Polonsky
Maya Ralph-Altman
Sireen Sweed
Tal Korner
Nadav Friedel
David Hagin
Eli Sprecher
Zvi Fishelson
Oren Kobiler
Lihi Adler-Abramovich
Jan Koum Center for Nanoscience and Nanotechnology
Olivier Schwartz
Pablo Guardado-Calvo
Natalia T. Freund
Department of Clinical Microbiology and Immunology, Gray Faculty of Medical and Health Sciences, Tel Aviv University