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A combination of two resistance mechanisms is critical for tick-borne encephalitis virus escape from a broadly neutralizing human antibody

Cell Rep. 2023-09; 
Pavel Svoboda, Jan Haviernik, Petr Bednar, Milos Matkovic, Tomás Cervantes Rincón, Jennifer Keeffe, Martin Palus, Jiri Salat, Marianna Agudelo, Michel C Nussenzweig, Andrea Cavalli, Davide F Robbiani, Daniel Ruzek
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Monoclonal Antibody Services … glycosylation in antibody escape, we produced mutant viruses with K311Q and K311N+… were synthesized and cloned into pUC57 or pC11 (GenScript, Piscataway, NJ, USA) plasmid … Get A Quote

摘要

Tick-borne encephalitis virus (TBEV) is a flavivirus that causes human neuroinfections and represents a growing health problem. The human monoclonal antibody T025 targets envelope protein domain III (EDIII) of TBEV and related tick-borne flaviviruses, potently neutralizing TBEV in vitro and in preclinical models, representing a promising candidate for clinical development. We demonstrate that TBEV escape in the presence of T025 or T028 (another EDIII-targeting human monoclonal antibody) results in virus variants of reduced pathogenicity, characterized by distinct sets of amino acid changes in EDII and EDIII that are jointly needed to confer resistance. EDIII substitution K311N impairs formation of a salt bridg... More

关键词

CP: Immunology, CP: Microbiology, escape mutant, monoclonal antibody, neutralization, tick-borne encephalitis, tick-borne encephalitis virus