Tian Xin, Zhang Liuqingqing, Xiang Guiqiyang, Tang Yijia, Zhu Ping, Yu Shuting, Jiang Fangying, Wang Shuai, Wang Jinzeng, Dai Yao, Zheng Desheng, Wang Jianbiao, Weng Xiangqin, Wang Shengyue, Tan Yun, Liu Feng
Shanghai Institute of Hematology, State Key Laboratory of Medical Genomics, National Research Center for Translational Medicine (Shanghai), Ruijin Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.
School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.
Oncogene. 2025 May;44(19):1350-1360. doi: 10.1038/s41388-025-03309-z. Epub 2025 Feb 22.
Cancer differentiation therapy aims to induce the maturation of neoplastic cells, but the mechanisms regulating cell fate decisions in oncogenic contexts remain unclear. In this study, we integrated single-cell chromatin accessibility and single-cell transcriptome analyses to explore the regulatory trajectories of a classical PML/RARα acute promyeloid leukemia (APL) cell line (NB4) post treatment by all-trans-retinoid acid (ATRA). Our findings indicated that ATRA activated specific PML/RARα-target enhancers to trigger a regulatory circuit composed of a positive feedforward gene regulatory circuit involving two transcription factors, SPI1 and CEBPE. This regulatory circuit was both necessary and sufficient to drive NB4 cells through an intermediate cell fate decision point to initiate terminal granulopoiesis. Moreover, ectopic expression of SPI1 and CEBPE promoted granulocytic differentiation in non-APL leukemia cell lines HL60 and K562. Our study sheds mechanistic insights into the differentiation trajectories induced by ATRA and illustrates a gene regulatory circuit that could be widely applied to promote differentiation of leukemia cells.
癌症分化疗法旨在诱导肿瘤细胞成熟,但在致癌环境中调节细胞命运决定的机制仍不清楚。在本研究中,我们整合了单细胞染色质可及性和单细胞转录组分析,以探索经典的早幼粒细胞白血病(APL)细胞系(NB4)在全反式维甲酸(ATRA)处理后的调控轨迹。我们的研究结果表明,ATRA激活了特定的PML/RARα靶向增强子,以触发一个由涉及两个转录因子SPI1和CEBPE的正反馈基因调控回路组成的调控回路。这个调控回路对于驱动NB4细胞通过一个中间细胞命运决定点启动终末粒细胞生成既必要又充分。此外,SPI1和CEBPE的异位表达促进了非APL白血病细胞系HL60和K562的粒细胞分化。我们的研究揭示了ATRA诱导的分化轨迹的机制见解,并阐明了一个可广泛应用于促进白血病细胞分化的基因调控回路。