Division of Experimental Hematology and Cancer Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.
Department of Pediatrics, University of Cincinnati, Cincinnati, OH, USA.
Leukemia. 2024 Aug;38(8):1787-1798. doi: 10.1038/s41375-024-02304-9. Epub 2024 Jun 27.
Germline heterozygous mutations in DDX41 predispose individuals to hematologic malignancies in adulthood. Most of these DDX41 mutations result in a truncated protein, leading to loss of protein function. To investigate the impact of these mutations on hematopoiesis, we generated mice with hematopoietic-specific knockout of one Ddx41 allele. Under normal steady-state conditions, there was minimal effect on lifelong hematopoiesis, resulting in a mild yet persistent reduction in red blood cell counts. However, stress induced by transplantation of the Ddx41 BM resulted in hematopoietic stem/progenitor cell (HSPC) defects and onset of hematopoietic failure upon aging. Transcriptomic analysis of HSPC subsets from the transplanted BM revealed activation of cellular stress responses, including upregulation of p53 target genes in erythroid progenitors. To understand how the loss of p53 affects the phenotype of Ddx41 HSPCs, we generated mice with combined Ddx41 and Trp53 heterozygous deletions. The reduction in p53 expression rescued the fitness defects in HSPC caused by Ddx41 heterozygosity. However, the combined Ddx41 and Trp53 mutant mice were prone to developing hematologic malignancies that resemble human myelodysplastic syndrome and acute myeloid leukemia. In conclusion, DDX41 heterozygosity causes dysregulation of the response to hematopoietic stress, which increases the risk of transformation with a p53 mutation.
胚系杂合突变的 DDX41 易导致成年人血液系统恶性肿瘤。这些 DDX41 突变大多数导致截短的蛋白,从而丧失蛋白功能。为了研究这些突变对造血的影响,我们生成了造血特异性敲除 Ddx41 一个等位基因的小鼠。在正常稳定状态下,对终身造血的影响极小,导致红细胞计数轻微但持续减少。然而,骨髓移植引起的应激导致造血干细胞/祖细胞(HSPC)缺陷,并随着年龄的增长出现造血衰竭。对来自移植骨髓的 HSPC 亚群的转录组分析显示,细胞应激反应被激活,包括红系祖细胞中 p53 靶基因的上调。为了了解 p53 缺失如何影响 Ddx41 HSPC 的表型,我们生成了 Ddx41 和 Trp53 杂合缺失的小鼠。p53 表达的降低挽救了 Ddx41 杂合性引起的 HSPC 功能缺陷。然而,同时缺失 Ddx41 和 Trp53 的突变小鼠易发生类似于人类骨髓增生异常综合征和急性髓系白血病的血液系统恶性肿瘤。总之,DDX41 杂合性导致对造血应激反应的失调,增加了与 p53 突变转化的风险。