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A conformation-specific ON-switch for controlling CAR T cells with an orally available drug.

Charlotte U Zajc | Markus Dobersberger | Irene Schaffner | Georg Mlynek | Dominic Pühringer | Benjamin Salzer | Kristina Djinović-Carugo | Peter Steinberger | Annika De Sousa Linhares | Nicole J Yang | Christian Obinger | Wolfgang Holter | Michael W Traxlmayr | Manfred Lehner
Proceedings of the National Academy of Sciences of the United States of America | 2020

Molecular ON-switches in which a chemical compound induces protein-protein interactions can allow cellular function to be controlled with small molecules. ON-switches based on clinically applicable compounds and human proteins would greatly facilitate their therapeutic use. Here, we developed an ON-switch system in which the human retinol binding protein 4 (hRBP4) of the lipocalin family interacts with engineered hRBP4 binders in a small molecule-dependent manner. Two different protein scaffolds were engineered to bind to hRBP4 when loaded with the orally available small molecule A1120. The crystal structure of an assembled ON-switch shows that the engineered binder specifically recognizes the conformational changes induced by A1120 in two loop regions of hRBP4. We demonstrate that this conformation-specific ON-switch is highly dependent on the presence of A1120, as demonstrated by an ∼500-fold increase in affinity upon addition of the small molecule drug. Furthermore, the ON-switch successfully regulated the activity of primary human CAR T cells in vitro. We anticipate that lipocalin-based ON-switches have the potential to be broadly applied for the safe pharmacological control of cellular therapeutics.

Pubmed ID: 32554495

Research resources used in this publication

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Associated grants

  • Agency: Austrian Science Fund FWF, Austria
    Id: W 1224

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