Exonic knockout and knockin gene editing in hematopoietic stem and progenitor cells rescues RAG1 immunodeficiency

造血干细胞和祖细胞中的外显子敲除和敲入基因编辑可挽救 RAG1 免疫缺陷

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作者:Maria Carmina Castiello, Chiara Brandas, Samuele Ferrari, Simona Porcellini, Nicolò Sacchetti, Daniele Canarutto, Elena Draghici, Ivan Merelli, Matteo Barcella, Gabriele Pelosi, Valentina Vavassori, Angelica Varesi, Aurelien Jacob, Serena Scala, Luca Basso Ricci, Marianna Paulis, Dario Strina, Marti

Abstract

Recombination activating genes (RAGs) are tightly regulated during lymphoid differentiation, and their mutations cause a spectrum of severe immunological disorders. Hematopoietic stem and progenitor cell (HSPC) transplantation is the treatment of choice but is limited by donor availability and toxicity. To overcome these issues, we developed gene editing strategies targeting a corrective sequence into the human RAG1 gene by homology-directed repair (HDR) and validated them by tailored two-dimensional, three-dimensional, and in vivo xenotransplant platforms to assess rescue of expression and function. Whereas integration into intron 1 of RAG1 achieved suboptimal correction, in-frame insertion into exon 2 drove physiologic human RAG1 expression and activity, allowing disruption of the dominant-negative effects of unrepaired hypomorphic alleles. Enhanced HDR-mediated gene editing enabled the correction of human RAG1 in HSPCs from patients with hypomorphic RAG1 mutations to overcome T and B cell differentiation blocks. Gene correction efficiency exceeded the minimal proportion of functional HSPCs required to rescue immunodeficiency in Rag1-/- mice, supporting the clinical translation of HSPC gene editing for the treatment of RAG1 deficiency.

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