bioRxiv · 10.1101/2023.12.06.570164
Modeling an ultra-rare epilepsy variant in wildtype mice with in utero prime editing
Abstract
Generating animal models that mirror a patients seizures within clinically-useful timeframes is an important step toward advancing precision medicine for genetic epilepsies. Here we report a somatic cell genome editing approach that rapidly incorporated a patients genomic variant into mice, which developed seizures recapitulating elements of the patients pathology. This approach offers a versatile in vivo platform for clinical, preclinical, and basic research applications, including tailoring pharmacotherapy, assessing variants of uncertain significance, and screening compounds to develop drugs for rare epilepsies. As proof-of-principle, we modeled an epilepsy patient with an ultra-rare variant of the NMDA receptor subunit GRIN2A using prime editing in utero directly in the developing brain of wild-type mice. This methodology achieved high-fidelity genome editing in vivo sufficient to induce frequent spontaneous seizures without necessitating germline modification or extensive breeding. Leveraging the speed and versatility of this approach, we propose a generalizable workflow to generate bedside-to-bench animal models of individual patients within weeks. This advance holds promise for providing a cost-effective, expedient in vivo testing platform that reduces barriers to access for precision medicine, and accelerates drug development for rare and neglected neurological conditions.
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Robertson, C. D., Davis, P., Richardson, R. R., Iffland, P. H., Vieira, D. C. O., Steyert, M., McKeon, P. N., Romanowski, A. J., Crutcher, G., Jasarevic, E., Wolff, S. B. E., Mathur, B. N., Crino, P. B., Bale, T. L., Dick, I. E., Poulopoulos, A.. 2023-12-08. Modeling an ultra-rare epilepsy variant in wildtype mice with in utero prime editing. https://doi.org/10.1101/2023.12.06.570164
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