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包括p53失调在内的转录组变化使DNMT3A突变细胞易于发生转化。

Transcriptomic changes including p53 dysregulation prime DNMT3A mutant cells for transformation.

作者信息

Lawrence Erin M, Cooray Amali, Kueh Andrew J, Pal Martin, Tai Lin, Garnham Alexandra L, Li-Wai-Suen Connie S N, Vanyai Hannah, Gouil Quentin, Lancaster James, Callegari Sylvie, Whelan Lauren, Lieschke Elizabeth, Thomas Annabella, Strasser Andreas, Liao Yang, Shi Wei, Wei Andrew H, Herold Marco J

机构信息

Walter and Eliza Hall Institute of Medical Research, Parkville, Victoria, Australia.

Department of Medical Biology, University of Melbourne, Parkville, Victoria, Australia.

出版信息

EMBO Rep. 2025 Apr 30. doi: 10.1038/s44319-025-00450-4.

Abstract

DNMT3A mutations are prevalent in haematologic malignancies. In our mouse model the murine homologue (R878H) of the human 'hotspot' R882H mutation is introduced into the mouse Dnmt3a locus. This results in globally reduced DNA methylation in all tissues. Mice with heterozygous R878H DNMT3A mutations develop γ-radiation induced thymic lymphoma more rapidly than control mice, suggesting a vulnerability to stress stimuli in Dnmt3a cells. In competitive transplantations, Dnmt3a LinSca-1Kit (LSK) haematopoietic stem/progenitor cells (HSPCs) have a competitive advantage over WT HSPCs, indicating a self-renewal phenotype at the expense of differentiation. RNA sequencing of Dnmt3a LSKs exposed to low dose γ-radiation shows downregulation of the p53 pathway compared to γ-irradiated WT LSKs. Accordingly, reduced PUMA expression is observed by flow cytometry in the bone marrow of γ-irradiated Dnmt3a mice due to impaired p53 signalling. These findings provide new insights into how DNMT3A mutations cause subtle changes in the transcriptome of LSK cells which contribute to their increased self-renewal and propensity for malignant transformation.

摘要

DNMT3A突变在血液系统恶性肿瘤中普遍存在。在我们的小鼠模型中,人类“热点”R882H突变的鼠类同源物(R878H)被引入小鼠Dnmt3a基因座。这导致所有组织中的DNA甲基化整体减少。携带杂合R878H DNMT3A突变的小鼠比对照小鼠更快速地发生γ辐射诱导的胸腺淋巴瘤,这表明Dnmt3a细胞对应激刺激敏感。在竞争性移植中,Dnmt3a LinSca-1Kit(LSK)造血干/祖细胞(HSPC)比野生型HSPC具有竞争优势,表明以分化为代价的自我更新表型。与γ照射的野生型LSK相比,对低剂量γ辐射的Dnmt3a LSK进行RNA测序显示p53途径下调。因此,由于p53信号传导受损,通过流式细胞术在γ照射的Dnmt3a小鼠的骨髓中观察到PUMA表达降低。这些发现为DNMT3A突变如何导致LSK细胞转录组的细微变化提供了新的见解,这些变化有助于其自我更新增加和恶性转化倾向。

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