Base editing of the HBG promoter induces potent fetal hemoglobin expression with no detectable off-target mutations in human HSCs

Reactivating silenced γ-globin expression through the disruption of repressive regulatory domains offers a therapeutic strategy for treating β-hemoglobinopathies. Here, we used transformer base editor (tBE), a recently developed cytosine base editor with no detectable off-target mutations, to disrup...

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Veröffentlicht in:Cell stem cell 2023-12, Vol.30 (12), p.1624-1639.e8
Hauptverfasser: Han, Wenyan, Qiu, Hou-Yuan, Sun, Shangwu, Fu, Zhi-Can, Wang, Guo-Quan, Qian, Xiaowen, Wang, Lijie, Zhai, Xiaowen, Wei, Jia, Wang, Yichuan, Guo, Yi-Lin, Cao, Guo-Hua, Ji, Rui-Jin, Zhang, Yi-Zhou, Ma, Hongxia, Wang, Hongsheng, Zhao, Mingli, Wu, Jing, Bi, Lili, Chen, Qiu-Bing, Li, Zifeng, Yu, Ling, Mou, Xiaodun, Yin, Hao, Yang, Li, Chen, Jia, Yang, Bei, Zhang, Ying
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Sprache:eng
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Zusammenfassung:Reactivating silenced γ-globin expression through the disruption of repressive regulatory domains offers a therapeutic strategy for treating β-hemoglobinopathies. Here, we used transformer base editor (tBE), a recently developed cytosine base editor with no detectable off-target mutations, to disrupt transcription-factor-binding motifs in hematopoietic stem cells. By performing functional screening of six motifs with tBE, we found that directly disrupting the BCL11A-binding motif in HBG1/2 promoters triggered the highest γ-globin expression. Via a side-by-side comparison with other clinical and preclinical strategies using Cas9 nuclease or conventional BEs (ABE8e and hA3A-BE3), we found that tBE-mediated disruption of the BCL11A-binding motif at the HBG1/2 promoters triggered the highest fetal hemoglobin in healthy and β-thalassemia patient hematopoietic stem/progenitor cells while exhibiting no detectable DNA or RNA off-target mutations. Durable therapeutic editing by tBE persisted in repopulating hematopoietic stem cells, demonstrating that tBE-mediated editing in HBG1/2 promoters is a safe and effective strategy for treating β-hemoglobinopathies.
ISSN:1934-5909
1875-9777
DOI:10.1016/j.stem.2023.10.007