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Titel: Genetically Encoded SpyTag Enables Modular AAV Retargeting via SpyCatcher-Fused Ligands for Targeted Gene Delivery
VerfasserIn: Armbruster, Anja
Hörner, Maximilian
Wagner, Hanna J.
Fink-Straube, Claudia
Weber, Wilfried
Sprache: Englisch
Titel: ACS Synthetic Biology
Bandnummer: 15 (2026)
Heft: 1
Seiten: 149-160
Verlag/Plattform: ACS
Erscheinungsjahr: 2025
Freie Schlagwörter: AAV capsid engineering
AAV retargeting
DARPins
modular gene delivery
SpyTag/SpyCatcher
suicide gene therapy
DDC-Sachgruppe: 500 Naturwissenschaften
Dokumenttyp: Journalartikel / Zeitschriftenartikel
Abstract: Recombinant adeno-associated viral (rAAV) vectors are a leading platform for in vivo gene therapy, valued for their excellent safety, broad serotype diversity, and scalable production. Targeted delivery through capsid display of ligands holds great promise, yet current retargeting strategies often rely on extensive capsid re-engineering and restrict the use of ligands incompatible with intracellular expression systems. Here, we present a modular AAV retargeting platform that, for the first time, employs the SpyTag/SpyCatcher system via genetic integration into the AAV2 capsid. SpyTag is a small peptide that forms a covalent, irreversible bond with its protein partner, SpyCatcher, allowing site-specific ligand coupling under physiological conditions. Inserting SpyTag into surface-exposed capsid sites enabled postassembly functionalization of AAVs with SpyCatcher-fused targeting proteins. As proof of concept, we used SpyCatcher fusions with designed ankyrin repeat proteins (DARPins) specific for EGFR, EpCAM, and HER2. This conferred highly specific transduction of corresponding cancer cell lines with minimal off-target activity. Therapeutic potential was demonstrated by delivering a suicide gene, inducing selective cancer cell killing upon prodrug administration. This “one-fits-all” platform allows rapid and flexible retargeting without significantly altering the underlying vectors genome or production process. It supports the incorporation of large or complex ligands not amenable to genetic fusion and facilitates high-throughput preclinical evaluation strategies. By uniting capsid engineering with modular ligand display, our approach provides a scalable and versatile framework for precision gene delivery, broadening the applicability of rAAV in both therapeutic and discovery settings.
DOI der Erstveröffentlichung: 10.1021/acssynbio.5c00565
URL der Erstveröffentlichung: https://doi.org/10.1021/acssynbio.5c00565
Link zu diesem Datensatz: urn:nbn:de:bsz:291--ds-468023
hdl:20.500.11880/41863
http://dx.doi.org/10.22028/D291-46802
ISSN: 2161-5063
Datum des Eintrags: 20-Mai-2026
Bezeichnung des in Beziehung stehenden Objekts: Supporting Information
In Beziehung stehendes Objekt: https://ndownloader.figstatic.com/files/60572336
Fakultät: NT - Naturwissenschaftlich- Technische Fakultät
Fachrichtung: NT - Materialwissenschaft und Werkstofftechnik
Professur: NT - Prof. Dr. Wilfried Weber
Sammlung:SciDok - Der Wissenschaftsserver der Universität des Saarlandes



Diese Ressource wurde unter folgender Copyright-Bestimmung veröffentlicht: Lizenz von Creative Commons Creative Commons