Published 2025 | Version Published
Journal Article

CDRxAbs: antibody small-molecule conjugates with computationally designed target-binding synergy

  • 1. ROR icon California Institute of Technology
  • 2. Merck Research Laboratories, 213 E Grand Ave, South San Francisco, CA 94080, USA
  • 3. Insight Partners, 1114 Avenue of the Americas, 36, th, Floor, New York, NY 10036, USA

Abstract

Bioconjugates as therapeutic modalities combine the advantages and offset the disadvantages of their constituent parts to achieve a refined spectrum of action. We combine the concept of bioconjugation with the full atomic simulation capability of computational protein design to define a new class of molecular recognition agents: CDR-extended antibodies, abbreviated as CDRxAbs. A CDRxAb incorporates a covalently attached small molecule into an antibody/target binding interface using computational protein design to create an antibody small-molecule conjugate that binds tighter to the target of the small molecule than the small molecule would alone. CDRxAbs are also expected to increase the target binding specificity of their associated small molecules. In a proof-of-concept study using monomeric streptavidin/biotin pairs at either a nanomolar or micromolar-level initial affinity, we designed nanobody-biotin conjugates that exhibited >20-fold affinity improvement against their protein targets with step-wise optimization of binding kinetics and overall protein stability. The workflow explored through this process promises a novel approach to optimize small-molecule based therapeutics and to explore new chemical and target space for molecular-recognition agents in general.

Copyright and License

© 2025, © The Author(s) 2025. Published by Oxford University Press. All rights reserved.

Additional details

Funding

Caltech Merkin Institute for Translational Research

Dates

Available
2025-03-21
Published online
Available
2025-04-09
Corrected and typeset