One-step generation of TCR knock-in mice targeted to the TCRβ locus results in functional mature T lymphocytes
Bilanovic, J.; Bortolatto, J.; Duan, S.; Bjornsdottir, V.; Teetz, A. K.; Thoms, A.; Fishbach, J.; Schmidt, F.; Nyberg, W.; Hartweger, H.; Escolano, A.; Thomas, P.; Victora, G. D.; Bilate, A. M.; Jacobsen, J. T.
Show abstract
Transgenic mouse models expressing predefined T cell receptors (TCRs) have been instrumental in advancing our understanding of T cell biology. However, these traditional models rely on random genomic insertion of large constructs, require labor-intensive embryo manipulation, and frequently result in aberrant TCR expression and phenotypes. These limitations render TCR transgenic models insufficient to meet the mounting demands for rapid and precise model systems to evaluate TCR specificities. To address these challenges, we developed a streamlined method that combines Adeno-Associated Virus (AAV), coupled with CRISPR/Cas9 genome editing to precisely integrate pre-rearranged TCR/{beta} sequences into the mouse Trb locus, enabling the rapid generation of first-of-its-kind TCR knock-in mice with physiological TCR expression and functional T cell differentiation. This approach bypasses the need for technically advanced embryo manipulation and enables rapid generation of models through a universally optimized AAV vector system, significantly enhancing the versatility and utility of monoclonal TCR mice in basic immunology and preclinical research such as cancer immunotherapy and vaccine development, providing a transformative resource to accelerate discovery and translation across disciplines.
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