The physiological interactome of TCR-like antibody therapeutics in human tissues.

Tina Weinzierl, Isaac Woodhouse, Emmanuelle Lezan, Lauriane Cabon, Giulia Raggi, Nina Hobi, Janick Stucki, Ekaterina Breous-Nystrom, Daniela Ortiz-Franyuti, Ramona Nudischer, Nathalie Schaub, Evelyne Durr, Hanqing Liao, Alejandro Carpy, Lydia Jasmin Hanisch, Vesna Kramar, Angelique Augustin, Estelle Marrer-Berger, Pablo Umaña, Christian Klein, Alexander Bujotzek, Nicola Ternette, Annalisa Nicastri

Journal: Nature communications 2024;15(1):3271

PMID: 38627373

Abstract

Selective binding of TCR-like antibodies that target a single tumour-specific peptide antigen presented by human leukocyte antigens (HLA) is the absolute prerequisite for their therapeutic suitability and patient safety. To date, selectivity assessment has been limited to peptide library screening and predictive modeling. We developed an experimental platform to de novo identify interactomes of TCR-like antibodies directly in human tissues using mass spectrometry. As proof of concept, we confirm the target epitope of a MAGE-A4-specific TCR-like antibody. We further determine cross-reactive peptide sequences for ESK1, a TCR-like antibody with known off-target activity, in human liver tissue. We confirm off-target-induced T cell activation and ESK1-mediated liver spheroid killing. Off-target sequences feature an amino acid motif that allows a structural groove-coordination mimicking that of the target peptide, therefore allowing the interaction with the engager molecule. We conclude that our strategy offers an accurate, scalable route for evaluating the non-clinical safety profile of TCR-like antibody therapeutics prior to first-in-human clinical application.

© 2024. The Author(s).

Address: Roche Pharma Research & Early Development, Roche Innovation Center Basel, 4070, Basel, Switzerland.; The Jenner Institute, Old Road Campus Research Building, Oxford, OX37DQ, UK.; Centre for Immuno-Oncology, Old Road Campus Research Building, Oxford, OX37DQ, UK.; Roche Innovation Center Zürich, 8952, Schlieren, Switzerland.; Roche Pharma Research & Early Development, Roche Innovation Center Munich, 82377, Penzberg, Germany.; Alveolix AG, Swiss Organs-on-Chip Innovation, 3010, Bern, Switzerland.; Roche Innovation Center Zürich, 8952, Schlieren, Switzerland. [email protected].; The Jenner Institute, Old Road Campus Research Building, Oxford, OX37DQ, UK. [email protected].; Centre for Immuno-Oncology, Old Road Campus Research Building, Oxford, OX37DQ, UK. [email protected].; Department of Pharmaceutical Sciences, University of Utrecht, 3584, CH, Utrecht, The Netherlands. [email protected].
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