Xu Song'en, Hong Jiaxin, Dongye Meimei, Lin Jiehao, Xue Rongtao, Huang Zhibin, Xu Jin, Zhang Yiyue, Leung Anskar Yu-Hung, Shen Juan, Zhang Wenqing, Liu Wei
Division of Cell, Developmental and Integrative Biology, School of Medicine, South China University of Technology, Guangzhou 510006, China.
State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Ophthalmology and Visual Science, Guangzhou 510060, China.
Proc Natl Acad Sci U S A. 2025 Mar 4;122(9):e2416121122. doi: 10.1073/pnas.2416121122. Epub 2025 Feb 28.
Approximately 30% of patients with myelodysplastic syndrome (MDS) progress to secondary acute myeloid leukemia (sAML) via accumulating gene mutations. Genomic analyses reveal a complex interplay among mutant genes, with co-occurring and mutually exclusive patterns. Hyperactivation of c-MYB and deficiency of PU.1 have been linked to myeloid disorders. We report a case of AML with concurrent and mutations, exhibiting early onset, high blast count, chemo-resistance, indicating high-risk features, along with elevated Pelger-Huët anomaly (PHA). However, the synergistic mechanism of and in sAML remains unclear. Using c-Myb-hyperactivation and Pu.1-deficient double-strain () zebrafish, we investigated MDS/sAML progression. Surprisingly, the double mutant exhibited a distinct type of neutrophil resembling clinical PHA cells and demonstrated a higher rate of MDS/sAML transformation. Further expression analysis revealed reduced expression in double-mutant zebrafish. Knockdown of resulted in PHA and increased blast cells, while overexpression of in reduced PHA cell level. This suggests that c-Myb hyperactivation and Pu.1 deficiency synergistically reduce expression, inducing the development of PHA-like neutrophils and promoting MDS/sAML progression in zebrafish. Moreover, coadministration of cell cycle inhibitor cytarabine (Ara-C) and the differential inducer all-trans retinoic acid (ATRA) could effectively relieve the neutrophil expansion and PHA symptoms in zebrafish. Our findings revealed that c-Myb hyperactivation and Pu.1 deficiency played a synergistic role in sAML development and suggests a phenotypic association between the emergence of PH-like cells and the transformation to sAML. Furthermore, zebrafish might serve as a suitable sAML model for drug screening.
约30%的骨髓增生异常综合征(MDS)患者会通过累积基因突变进展为继发性急性髓系白血病(sAML)。基因组分析揭示了突变基因之间复杂的相互作用,存在共现和互斥模式。c-MYB的过度激活和PU.1的缺陷与髓系疾病有关。我们报告了一例同时存在[具体基因1]和[具体基因2]突变的AML病例,该病例表现为起病早、原始细胞计数高、化疗耐药,提示具有高危特征,同时伴有Pelger-Huët异常(PHA)升高。然而,[具体基因1]和[具体基因2]在sAML中的协同机制仍不清楚。利用c-Myb过度激活和Pu.1缺陷的双基因([双基因名称])斑马鱼,我们研究了MDS/sAML的进展。令人惊讶的是,双突变体表现出一种类似于临床PHA细胞的独特中性粒细胞类型,并显示出更高的MDS/sAML转化速率。进一步的表达分析显示双突变斑马鱼中[相关基因]的表达降低。敲低[相关基因]会导致PHA并增加原始细胞,而在[双基因斑马鱼]中过表达[相关基因]可降低PHA细胞水平。这表明c-Myb过度激活和Pu.1缺陷协同降低[相关基因]的表达,诱导类似PHA的中性粒细胞发育并促进斑马鱼中MDS/sAML的进展。此外,联合给予细胞周期抑制剂阿糖胞苷(Ara-C)和分化诱导剂全反式维甲酸(ATRA)可有效缓解[双基因斑马鱼]中的中性粒细胞扩增和PHA症状。我们的研究结果表明,c-Myb过度激活和Pu.1缺陷在sAML发展中起协同作用,并提示PH样细胞的出现与向sAML转化之间存在表型关联。此外,[双基因斑马鱼]可能是一种适合用于药物筛选的sAML模型。