Department of Radiology, College of Medicine, The Ohio State University, Columbus, OH, 43210, USA.
Department of Biotechnology, CSIR-North East Institute of Science and Technology (CSIR-NEIST), Jorhat, Assam, 785006, India.
Cell Death Dis. 2018 May 1;9(5):561. doi: 10.1038/s41419-018-0585-y.
Cancer stem cells (CSCs), representing the root of many solid tumors including ovarian cancer, have been implicated in disease recurrence, metastasis, and therapeutic resistance. Our previous study has demonstrated that the CSC subpopulation in ovarian cancer can be limited by DNA damage-binding protein 2 (DDB2). Here, we demonstrated that the ovarian CSC subpopulation can be maintained via cancer cell dedifferentiation, and DDB2 is able to suppress this non-CSC-to-CSC conversion by repression of ALDH1A1 transcription. Mechanistically, DDB2 binds to the ALDH1A1 gene promoter, facilitating the enrichment of histone H3K27me3, and competing with the transcription factor C/EBPβ for binding to this region, eventually inhibiting the promoter activity of the ALDH1A1 gene. The de-repression of ALDH1A1 expression contributes to DDB2 silencing-augmented non-CSC-to-CSC conversion and expansion of the CSC subpopulation. We further showed that treatment with a selective ALDH1A1 inhibitor blocked DDB2 silencing-induced expansion of CSCs, and halted orthotopic xenograft tumor growth. Together, our data demonstrate that DDB2, functioning as a transcription repressor, can abrogate ovarian CSC properties by downregulating ALDH1A1 expression.
癌症干细胞(CSCs)是许多实体肿瘤(包括卵巢癌)的根源,它们与疾病复发、转移和治疗耐药性有关。我们之前的研究表明,卵巢癌中的 CSC 亚群可以受到 DNA 损伤结合蛋白 2(DDB2)的限制。在这里,我们证明卵巢 CSC 亚群可以通过癌细胞去分化来维持,DDB2 能够通过抑制 ALDH1A1 转录来抑制这种非 CSC 向 CSC 的转化。在机制上,DDB2 结合到 ALDH1A1 基因启动子上,促进组蛋白 H3K27me3 的富集,并与转录因子 C/EBPβ竞争结合到该区域,最终抑制 ALDH1A1 基因的启动子活性。ALDH1A1 表达的去抑制导致 DDB2 沉默增强的非 CSC 向 CSC 转化和 CSC 亚群的扩增。我们进一步表明,用选择性的 ALDH1A1 抑制剂处理可以阻断 DDB2 沉默诱导的 CSCs 扩增,并阻止原位异种移植肿瘤的生长。总之,我们的数据表明,作为转录抑制剂的 DDB2 通过下调 ALDH1A1 的表达可以消除卵巢 CSC 的特性。