CRISPR-Cas9n-mediated ELANE promoter editing for gene therapy of severe congenital neutropenia
Severe congenital neutropenia (CN) is an inherited pre-leukemia bone marrow failure syndrome commonly caused by autosomal-dominant ELANE mutations (ELANE-CN). ELANE-CN patients are treated with daily injections of recombinant human granulocyte colony-stimulating factor (rhG-CSF). However, some patie...
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Veröffentlicht in: | Molecular therapy 2024-06, Vol.32 (6), p.1628-1642 |
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Zusammenfassung: | Severe congenital neutropenia (CN) is an inherited pre-leukemia bone marrow failure syndrome commonly caused by autosomal-dominant ELANE mutations (ELANE-CN). ELANE-CN patients are treated with daily injections of recombinant human granulocyte colony-stimulating factor (rhG-CSF). However, some patients do not respond to rhG-CSF, and approximately 15% of ELANE-CN patients develop myelodysplasia or acute myeloid leukemia. Here, we report the development of a curative therapy for ELANE-CN through inhibition of ELANE mRNA expression by introducing two single-strand DNA breaks at the opposing DNA strands of the ELANE promoter TATA box using CRISPR-Cas9D10A nickases—termed MILESTONE. This editing effectively restored defective neutrophil differentiation of ELANE-CN CD34+ hematopoietic stem and progenitor cells (HSPCs) in vitro and in vivo, without affecting the functions of the edited neutrophils. CRISPResso analysis of the edited ELANE-CN CD34+ HSPCs revealed on-target efficiencies of over 90%. Simultaneously, GUIDE-seq, CAST-Seq, and rhAmpSeq indicated a safe off-target profile with no off-target sites or chromosomal translocations. Taken together, ex vivo gene editing of ELANE-CN HSPCs using MILESTONE in the setting of autologous stem cell transplantation could be a universal, safe, and efficient gene therapy approach for ELANE-CN patients.
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Skokowa and colleagues developed a universal, safe, efficient gene therapy for ELANE-related severe congenital neutropenia. Autosomal-dominant ELANE mutations cause bone marrow failure and severe congenital neutropenia in half of patients by targeting the regulatory region of ELANE with CRISPR-Cas nickases, inhibiting ELANE expression in primary HSPCs, and restoring granulopoiesis in vitro and in vivo. |
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ISSN: | 1525-0016 1525-0024 1525-0024 |
DOI: | 10.1016/j.ymthe.2024.03.037 |