DOI: 10.1126/scitranslmed.aec7031 ISSN: 1946-6234

Prime editing of human hematopoietic stem cells for correction of GATA2 deficiency

Jonas H. Wolff, Thomas W. Skov, Sofie R. Dorset, Janni Sjelborg, Sujan Ravendran, Anne Louise S. Revenfeld, Didde Haslund, Anaïs Marie Møller, Mette Holm, Martin K. Thomsen, Trine H. Mogensen, Bjarne K. Møller, Rasmus O. Bak, Jacob Giehm Mikkelsen

GATA2 (GATA binding protein 2) deficiency is a severe immunodeficiency caused by heterozygous variants in the gene encoding the transcription factor GATA2. Ex vivo gene editing of a patient’s own CD34 + hematopoietic stem and progenitor cells (HSPCs) could provide curative treatment. However, current methods that rely on nuclease-dependent editing face considerable challenges, including off-target effects, genotoxicity, and reduced engraftment potential. Here, we report the development of an efficient gene editing therapy for GATA2 deficiency using prime editing with a favorable safety profile in terms of off-target effects and genotoxicity. We used prime editing to correct a GATA2 c.956_962del variant in patient-derived CD34 + HSPCs, reaching up to 70% prime editing efficiency and an increase in functional GATA2 alleles from 50 to 77%. We demonstrate that prime-edited patient HSPCs showed increased engraftment potential compared with untreated cells and detected limited on-target genotoxicity and no off-target editing at the top 20 predicted sites. Short prestimulation of CD34 + HSPCs supported efficient prime editing while preserving stemness, mitigating p53 activation, and increasing multilineage engraftment. We report PASSIGE (prime editing–assisted site-specific integrase gene editing) in CD34 + HSPCs, developing a more broadly applicable, double-strand break–independent complementary DNA insertion strategy with the potential to address a large proportion of alleles causing GATA2 deficiency. Together, our results demonstrate the preclinical development of prime editing–based therapies for GATA2 deficiency in CD34 + HSPCs.