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Getts, D.

Publications and source records attributed to Getts, D..

2 recordsLinked to original sources

CRISPR-Enabled Autonomous Transposable Element (CREATE) for RNA-based gene editing and delivery

To address a wide range of genetic diseases, genome editing tools that can achieve targeted delivery of large genes without causing double-stand breaks (DSBs) or requiring DNA templates are necessary. Here, we introduce the CRISPR-Enabled Autonomous Transposable Element (CREATE), a genome editing system that combines the programmability and precision of CRISPR/Cas9 with the RNA-mediated gene insertion capabilities of the human LINE1 (L1) element. CREATE employs a modified L1 mRNA to carry a payload gene, and a Cas9 nickase to facilitate targeted editing by L1-mediated reverse transcription and integration without relying on DSBs or DNA templates. Using the system, a 1.1 kb gene cassette comprising an EF1 promoter and green fluorescent protein (GFP) gene is inserted into several genomic loci of multiple human cell lines. Mechanistic studies reveal that the CREATE system is highly specific with no observed off-target events. Together, these findings establish CREATE as a programmable gene delivery technology solely based on RNA components, enabling large-scale in vivo genome engineering with broad therapeutic potential.

synthetic biology↗

Chimeric Antigen Cytotoxic Receptors for In-Vivo Engineering of Tumor-targeting Natural Killer Cells

Ex vivo chimeric antigen receptor (CAR) NK cells face challenges in manufacturing, and have limited tumor infiltration and in vivo persistency. A method leveraging mRNA-based delivery for in-vivo engineering of human NK cells could address these issues but has not been established. Here we developed an in-vivo NK cell engineering method by designing CARs that capitalize on inherent NK receptor biology for specific expression and function. These CARs utilize the Immunoreceptor Tyrosine-based Activation Motif (ITAM)-containing signaling adaptor in human NK cells for tumor destruction and cytokine response. We demonstrated that an NKp44-based CARs expression and function depend on the signaling adaptor DAP12. This approach enables precise mRNA-driven in-vivo NK cell programming against tumors, ensuring specificity and reducing off-target expression in non-immune healthy tissues.

immunology↗