Abstract
AbstractConventional bivalent antibodies against cell surface receptors often initiate unwanted signal transduction by crosslinking two antigen molecules. Biparatopic antibodies (BpAbs) bind to two different epitopes on the same antigen, thus altering crosslinking ability. In this study, we develop BpAbs against tumor necrosis factor receptor 2 (TNFR2), which is an attractive immune checkpoint target. Using different pairs of antibody variable regions specific to topographically distinct TNFR2 epitopes, we successfully regulate the size of BpAb–TNFR2 immunocomplexes to result in controlled agonistic activities. Our series of results indicate that the relative positions of the two epitopes recognized by the BpAb are critical for controlling its signaling activity. One particular antagonist, Bp109-92, binds TNFR2 in a 1:1 manner without unwanted signal transduction, and its structural basis is determined using cryo-electron microscopy. This antagonist suppresses the proliferation of regulatory T cells expressing TNFR2. Therefore, the BpAb format would be useful in designing specific and distinct antibody functions.
Funder
MEXT | Japan Society for the Promotion of Science
Takeda Science Foundation
Kyoto University Foundation
Japan Agency for Medical Research and Development
MEXT | Japan Science and Technology Agency
JEOL YOKOGUSHI Research Alliance Laboratory of Osaka University
Publisher
Springer Science and Business Media LLC
Subject
General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)
Reference53 articles.
1. Vanamee, É. S. & Faustman, D. L. Structural principles of tumor necrosis factor superfamily signaling. Sci. Signal. 11, eaao4910 (2018).
2. Vanamee, E. S. & Faustman, D. L. On the TRAIL of better therapies: understanding TNFRSF structure-function. Cells 9, 764 (2020).
3. Wajant, H. Principles of antibody-mediated TNF receptor activation. Cell Death Differ. 22, 1727–1741 (2015).
4. Mukai, Y. et al. Solution of the structure of the TNF-TNFR2 complex. Sci. Signal. 3, ra83–ra83 (2010).
5. Wang, J. et al. TNFR2 ligation in human T regulatory cells enhances IL2-induced cell proliferation through the non-canonical NF-κB pathway. Sci. Rep. 8, 12079 (2018).
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