Prof. Dr. med. Johannes Oldenburg
Experimental Haematology and Transfusion Medicine
Johannes.Oldenburg@ukbonn.de View member: Prof. Dr. med. Johannes Oldenburg
Nature communications
Experimental validation and functional optimization remain bottlenecks in AI-based protein design. We present a scalable workflow for developing AI-designed minibinders against cancer-associated surface proteins. Screening thousands of designs using mammalian cell-surface display identifies several high-affinity PD-L1 minibinders but far fewer for CD276 (B7-H3) and VTCN1 (B7-H4), highlighting substantial target dependence. Interface predicted template modeling (ipTM) scores generated by Chai-1 with ESM embeddings correlate with binding success and capture deleterious effects of interface mutations. Fluorophore-labeled AI-minibinders enable flow-cytometric staining comparable to conventional antibodies. However, when incorporated into chimeric antigen receptors (CAR), some show poor cell-surface trafficking and limited functionality. Redesign through a genetic algorithm-based diversification strategy that preserves the binding interface while changing non-binding surfaces experimentally reveals an isoelectric point (pI) window that improves CAR expression and enhances target-selective tumor cell killing. Our findings identify biochemical optimization beyond the binding interface as a critical requirement for translating AI-minibinders into functional applications.
© 2026. The Author(s).
PMID: 42624861
Experimental Haematology and Transfusion Medicine
Johannes.Oldenburg@ukbonn.de View member: Prof. Dr. med. Johannes OldenburgInstitute of Molecular Medicine and Experimental Immunology
tim.rollenske@uni-bonn.de View member: Jun.-Prof. Tim RollenskeInstitute of Structural Biology
matthias.geyer@uni-bonn.de View member: Prof. Dr. Matthias GeyerInstitute of Experimental Oncology
Tobias.Bald@ukbonn.de View member: Prof. Dr. Tobias BaldInstitute of Clinical Chemistry & Clinical Pharmacology
Jonathan.Schmid-Burgk@ukbonn.de View member: Prof. Dr. Jonathan Schmid-BurgkInstitute of Structural Biology
hagelueken@uni-bonn.de View member: PD Dr. Gregor HagelükenInstitute of Experimental Oncology
michael.hoelzel@ukbonn.de View member: Prof. Dr. Michael Hölzel