| Literature DB >> 32639723 |
Richard Y-C Huang1, Feng Wang2, Matthew Wheeler3, Yun Wang1, Robert Langish1, Bryant Chau2, Jia Dong2, Winse Morishige2, Natalie Bezman3, Pavel Strop2, Arvind Rajpal2, Olafur Gudmundsson1, Guodong Chen1.
Abstract
Bispecific antibodies (BsAbs), with a unique mechanism of recognizing two different epitopes or antigens, have shown potential in various therapeutic areas. Molecular characterization of BsAbs' epitopes not only allows for detailed understanding of their mechanism of actions but also guides the design and selection of drug candidate molecules. In this study, we illustrate the practical utility of an integrated approach, including size exclusion chromatography with multiangle light scattering and native mass spectrometry (MS) for the biophysical characterization of complex formation of a BsAb with two target antigens, cluster of differentiation 3 (CD3) and B-cell maturation antigen (BCMA). MS-based protein footprinting strategies, including hydrogen/deuterium exchange MS, fast photochemical oxidation of proteins, and carboxyl group footprinting with glycine ethyl ester, were further applied to determine BsAb's binding epitopes. This combination approach provides molecular details on the binding mechanisms of BsAb to the two distinct antigens with rapid output and high resolution.Entities:
Mesh:
Substances:
Year: 2020 PMID: 32639723 DOI: 10.1021/acs.analchem.0c01876
Source DB: PubMed Journal: Anal Chem ISSN: 0003-2700 Impact factor: 6.986