Genetic depletion of the transcriptional repressor BCL11A in red blood cell precursors alleviates β-hemoglobinopathies by inducing the fetal γ-globin genes. However, additional erythroid genes are regulated by BCL11A and the effects of its deficiency on erythropoiesis are insufficiently described. We discovered that Cas9 disruption of the BCL11A intron 2 erythroid enhancer in CD34+ hematopoietic stem and progenitor cells using a clinically approved strategy caused impaired expansion and apoptosis of erythroid precursors in vitro and reduced repopulation of the erythroid compartment after xenotransplantation into immunodeficient mice. Mutant colony-forming unit erythroid cells, proerythroblasts, and basophilic erythroblasts exhibited dysregulation of 94 genes (more than twofold change, false discovery rate < 0.05), 25 of which are likely direct targets of BCL11A. Differentially expressed genes were associated with a range of biological pathways that affect cell expansion and survival. Our findings reveal that BCL11A regulates additional aspects of erythropoiesis beyond γ-globin gene repression, with unknown clinical consequences.
BCL11A-deficient human erythropoiesis is impaired in vitro and after xenotransplantation into mice.
BCL11A 缺陷的人类红细胞生成在体外和异种移植到小鼠后均受到损害
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作者:Jang Yoonjeong, Feng Ruopeng, Palmer Lance E, Mayuranathan Thiyagaraj, Yao Yu, Mayberry Kalin, Zhou Sheng, Xu Jian, Gossett Jeffrey M, Kang Guolian, Cheng Yong, Yen Jonathan S, Weiss Mitchell J
| 期刊: | Blood Advances | 影响因子: | 7.100 |
| 时间: | 2025 | 起止号: | 2025 Jun 10; 9(11):2722-2732 |
| doi: | 10.1182/bloodadvances.2024015574 | 种属: | Human |
| 研究方向: | 细胞生物学 | ||
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