6533b7d5fe1ef96bd12646de

RESEARCH PRODUCT

A Library-Based Screening Strategy for the Identification of DARPins as Ligands for Receptor-Targeted AAV and Lentiviral Vectors

Joachim KochRobert C. MünchChristian J. BuchholzWashington T. SamukangeRuth-therese FreilingBirgit DreierIrene C. SchneiderAndreas PlückthunJessica HartmannMarkus A. Seeger

subject

0301 basic medicinelcsh:QH426-470610 Medicine & healthComputational biologyQH426-470BiologyGene deliveryArticleViral vector03 medical and health sciences0302 clinical medicine1311 GeneticsLV10019 Department of Biochemistry1312 Molecular BiologyGeneticsVector (molecular biology)lcsh:QH573-671Molecular Biology030304 developmental biology0303 health sciencesQH573-671lcsh:Cytology10179 Institute of Medical Microbiologyribosome displayCorrectionAAVFusion proteinlcsh:GeneticsCD105NKp46DARPin030104 developmental biologyGluA4DARPin1313 Molecular Medicine030220 oncology & carcinogenesisBiotinylationRibosome displayreceptor-targeted viral vectors570 Life sciences; biologyMolecular MedicineAnkyrin repeatCytology

description

Delivering genes selectively to the therapeutically relevant cell type is among the prime goals of vector development. Here, we present a high-throughput selection and screening process that identifies designed ankyrin repeat proteins (DARPins) optimally suited for receptor-targeted gene delivery using adeno-associated viral (AAV) and lentiviral (LV) vectors. In particular, the process includes expression, purification, and in situ biotinylation of the extracellular domains of target receptors as Fc fusion proteins in mammalian cells and the selection of high-affinity binders by ribosome display from DARPin libraries each covering more than 1012 variants. This way, DARPins specific for the glutamate receptor subunit GluA4, the endothelial surface marker CD105, and the natural killer cell marker NKp46 were generated. The identification of DARPins best suited for gene delivery was achieved by screening small-scale vector productions. Both LV and AAV particles displaying the selected DARPins transduced only cells expressing the corresponding target receptor. The data confirm that a straightforward process for the generation of receptor-targeted viral vectors has been established. Moreover, biochemical analysis of a panel of DARPins revealed that their functional cell-surface expression as fusion proteins is more relevant for efficient gene delivery by LV particles than functional binding affinity. Keywords: DARPin, receptor-targeted viral vectors, LV, AAV, ribosome display, GluA4, CD105, NKp46

https://doi.org/10.1016/j.omtm.2018.07.001