Epitope topography of agonist antibodies to the checkpoint inhibitory receptor BTLA
- PMID: 37279757
- DOI: 10.1016/j.str.2023.05.011
Epitope topography of agonist antibodies to the checkpoint inhibitory receptor BTLA
Abstract
B and T lymphocyte attenuator (BTLA) is an attractive target for a new class of therapeutics that attempt to rebalance the immune system by agonizing checkpoint inhibitory receptors (CIRs). Herpesvirus entry mediator (HVEM) binds BTLA in both trans- and cis-orientations. We report here the development and structural characterization of three humanized BTLA agonist antibodies, 22B3, 25F7, and 23C8. We determined the crystal structures of the antibody-BTLA complexes, showing that these antibodies bind distinct and non-overlapping epitopes of BTLA. While all three antibodies activate BTLA, 22B3 mimics HVEM binding to BTLA and shows the strongest agonistic activity in functional cell assays and in an imiquimod-induced mouse model of psoriasis. 22B3 is also capable of modulating HVEM signaling through the BTLA-HVEM cis-interaction. The data obtained from crystal structures, biochemical assays, and functional studies provide a mechanistic model of HVEM and BTLA organization on the cell surface and informed the discovery of a highly active BTLA agonist.
Keywords: B and T lymphocyte attenuator; BTLA; NF-κB inhibition; T cells; TNFRSF14; agonist antibody; autoimmune disease; checkpoint inhibitory receptor; herpesvirus entry mediator.
Copyright © 2023 The Author(s). Published by Elsevier Ltd.. All rights reserved.
Conflict of interest statement
Declaration of interests C.F.W. is inventor on patents related to BTLA and has received fees as consultant from Coherus Biosciences and Avalo Therapeutics. L.B., K.F., J.H., M.H., C.H., R.L., D.L., V.O., K.W., and A.C.V. are employees and shareholders of Eli Lilly and Company. V.O., S.A., and A.C.V. hold a patent on BTLA antibodies and the use thereof described in this manuscript.
Publication types
MeSH terms
Substances
Grants and funding
LinkOut - more resources
Full Text Sources
Molecular Biology Databases
Research Materials
