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DNMT3A调控小鼠巨核细胞偏向性造血干细胞的命运决定。

DNMT3A regulates murine megakaryocyte-biased hematopoietic stem cell fate decisions.

作者信息

Waldvogel Sarah M, Camacho Virginia, Fan Dandan, Guzman Anna G, Garcia-Martell Alejandra, Khabusheva Elmira, Pridgen Jacey Rodriguez, De La Fuente Josephine, Rau Rachel, Laidman Ashlyn G, Barrachina Maria N, Carminita Estelle, Courson Justin A, Williamson Michael R, Hsu Joanne I, Chen Chun-Wei, Reyes Jaime, Pradhan Subhashree, Rumbaut Rolando E, Burns Alan R, Deneen Benjamin, Su Jianzhong, Machlus Kellie R, Goodell Margaret A

机构信息

Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX.

Center for Cell and Gene Therapy, Baylor College of Medicine, Houston, TX.

出版信息

Blood Adv. 2025 May 13;9(9):2285-2299. doi: 10.1182/bloodadvances.2024015061.

Abstract

Hematopoietic stem cells (HSCs) are defined by their capacity to regenerate all main components of peripheral blood, but individual HSCs exhibit a range of preferences for generating downstream cell types. Their propensities are thought to be epigenetically encoded, but few differential regulatory mechanisms have been identified. In this work, we explored the role of DNA methyltransferase 3A (DNMT3A) in the megakaryocyte-biased HSC population, which is thought to reside at the top of the hematopoietic hierarchy. We demonstrate that heterozygous loss of DNMT3A (Dnmt3a+/-) in these megakaryocyte-biased HSCs has distinct consequences compared with the rest of the HSC pool. These megakaryocyte-biased HSCs become delayed in their lymphoid-repopulating ability but can ultimately regenerate all lineages. We further demonstrate that Dnmt3a+/- mice have increased numbers of megakaryocytes in the bone marrow. Analysis of DNA methylation differences between wild-type (WT) and Dnmt3a+/- HSC subsets, megakaryocyte-erythroid progenitors, and megakaryocytes revealed that DNA methylation is eroded in the mutants in a cell type-specific fashion. Although transcriptional differences between WT and Dnmt3a+/- megakaryocyte-biased HSCs are subtle, the pattern of DNA methylation loss in this HSC subset is almost completely different from that in non-megakaryocyte-biased HSCs. Together, our findings establish the role of epigenetic regulation in the fate of megakaryocyte-biased HSCs and their downstream progeny and suggest that the outcomes of DNMT3A loss might vary depending on the identity of the HSC that acquires the mutation.

摘要

造血干细胞(HSCs)的定义是其具有再生外周血所有主要成分的能力,但单个造血干细胞在生成下游细胞类型方面表现出一系列偏好。人们认为它们的倾向是由表观遗传编码的,但已确定的差异调节机制很少。在这项研究中,我们探讨了DNA甲基转移酶3A(DNMT3A)在偏向巨核细胞的造血干细胞群体中的作用,该群体被认为位于造血层次结构的顶端。我们证明,这些偏向巨核细胞的造血干细胞中DNMT3A的杂合缺失(Dnmt3a+/-)与其余造血干细胞库相比具有不同的后果。这些偏向巨核细胞的造血干细胞在淋巴细胞重建能力方面出现延迟,但最终可以再生所有谱系。我们进一步证明,Dnmt3a+/-小鼠骨髓中的巨核细胞数量增加。对野生型(WT)和Dnmt3a+/-造血干细胞亚群、巨核细胞-红系祖细胞和巨核细胞之间的DNA甲基化差异分析表明,突变体中的DNA甲基化以细胞类型特异性方式被侵蚀。尽管WT和Dnmt3a+/-偏向巨核细胞的造血干细胞之间的转录差异很细微,但该造血干细胞亚群中DNA甲基化缺失的模式与非偏向巨核细胞的造血干细胞几乎完全不同。总之,我们的研究结果确定了表观遗传调控在偏向巨核细胞的造血干细胞及其下游子代命运中的作用,并表明DNMT3A缺失的结果可能因获得突变的造血干细胞的身份而异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23b5/12124613/cc5cd642a47b/BLOODA_ADV-2024-015061-ga1.jpg

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