Hydrogen deuterium exchange mass spectrometry identifies the dominant paratope in CD20 antigen binding to the NCD1.2 monoclonal antibody

Author:

Uhrik Lukas1,Hernychova Lenka1ORCID,Muller Petr1,Kalathiya Umesh2,Lisowska Malgorzata M.2,Kocikowski Mikolaj23,Parys Maciej3,Faktor Jakub2,Nekulova Marta1,Nortcliffe Chris4,Zatloukalova Pavlina1,Ruetgen Barbara5,Fahraeus Robin126,Ball Kathryn L.3,Argyle David J.3,Vojtesek Borivoj1,Hupp Ted R.123

Affiliation:

1. Research Centre for Applied Molecular Oncology, Masaryk Memorial Cancer Institute, Zluty kopec 7, 656 53 Brno, Czech Republic

2. International Centre for Cancer Vaccine Science, University of Gdansk, ul. Kładki 24 80-822 Gdańsk, Poland

3. Institute of Genetics and Molecular Medicine, University of Edinburgh, EH4 2XR Edinburgh, U.K.

4. Sciex, Phoenix House Lakeside Drive Centre Park WA1 1RX, Warrington, U.K.

5. Clinical Pathology, Department of Pathobiology, University of Veterinary Medicine Vienna, Veterinärplatz 1, 1210 Vienna, Austria

6. Institut de Génétique Moléculaire, INSERM Unité 940, Université Paris VII, Hôpital St Louis, Paris, France

Abstract

A comparative canine–human therapeutics model is being developed in B-cell lymphoma through the generation of a hybridoma cell that produces a murine monoclonal antibody specific for canine CD20. The hybridoma cell produces two light chains, light chain-3, and light chain-7. However, the contribution of either light chain to the authentic full-length hybridoma derived IgG is undefined. Mass spectrometry was used to identify only one of the two light chains, light chain-7, as predominating in the full-length IgG. Gene synthesis created a recombinant murine–canine chimeric monoclonal antibody expressing light chain-7 that reconstituted the IgG binding to CD20. Using light chain-7 as a reference sequence, hydrogen deuterium exchange mass spectrometry was used to identify the dominant CDR region implicated in CD20 antigen binding. Early in the deuteration reaction, the CD20 antigen suppressed deuteration at CDR3 (VH). In later time points, deuterium suppression occurred at CDR2 (VH) and CDR2 (VL), with the maintenance of the CDR3 (VH) interaction. These data suggest that CDR3 (VH) functions as the dominant antigen docking motif and that antibody aggregation is induced at later time points after antigen binding. These approaches define a methodology for fine mapping of CDR contacts using nested enzymatic reactions and hydrogen deuterium exchange mass spectrometry. These data support the further development of an engineered, synthetic canine–murine monoclonal antibody, focused on CDR3 (VH), for use as a canine lymphoma therapeutic that mimics the human–murine chimeric anti-CD20 antibody Rituximab.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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