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Regulation of glioblastoma multiforme stem‐like cells by inhibitor of DNA binding proteins and oligodendroglial lineage‐associated transcription factors

机译:DNA结合蛋白和少突胶质细胞谱系相关转录因子抑制剂对胶质母细胞瘤样干细胞的调控

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摘要

Tumor‐initiating stem cells (also referred to as cancer stem cells, CSCs) are a subpopulation of cancer cells that play unique roles in tumor propagation, therapeutic resistance and tumor recurrence. It is increasingly important to understand how molecular signaling regulates the self‐renewal and differentiation of CSCs. Basic helix‐loop‐helix (bHLH) transcription factors are critical for the differentiation of normal stem cells, yet their roles in neoplastic stem cells are not well understood. In glioblastoma neurosphere cultures that contain cancer stem cells (GBM‐CSCs), the bHLH family member inhibitors of DNA binding protein 2 and 4 (Id2 and Id4) were found to be upregulated during the differentiation of GBM‐CSCs in response to histone deacetylase inhibitors. In this study, we examined the functions of Id2 and Id4 in GBM neurosphere cells and identified Id proteins as efficient differentiation regulators of GBM‐CSCs. Overexpression of Id2 and Id4 promoted the lineage‐specific differentiation of GBM neurosphere cells as evidenced by the induction of neuronal/astroglial differentiation markers Tuj1 and GFAP and the inhibition of the oligodendroglial marker GalC. Id protein overexpression also reduced both stem cell marker expression and neurosphere formation potential, a biological marker of cancer cell “stemness.” We further showed that Id2 and Id4 regulated GBM neurosphere differentiation through downregulating of another bHLH family member, the oligodendroglial lineage‐associated transcription factors (Olig) 1 and 2. Our results provide evidence for distinct functions of Id proteins in neoplastic stem cells, which supports Id proteins and their downstream targets as potential candidates for differentiation therapy in CSCs. (Cancer Sci 2012; 103: 1028–1037)
机译:肿瘤起始干细胞(也称为癌症干细胞,CSC)是癌细胞的亚群,在肿瘤的繁殖,治疗抗性和肿瘤复发中起着独特的作用。了解分子信号传导如何调控CSCs的自我更新和分化越来越重要。基本的螺旋-环-螺旋(bHLH)转录因子对于正常干细胞的分化至关重要,但是它们在肿瘤干细胞中的作用还没有被很好地理解。在含有癌干细胞(GBM-CSC)的胶质母细胞瘤神经球培养物中,发现DNA结合蛋白2和4的bHLH家族成员抑制剂(Id2和Id4)在组蛋白脱乙酰基酶抑制剂的反应过程中被上调了GBM-CSCs的表达。 。在这项研究中,我们检查了GBM神经球细胞中Id2和Id4的功能,并确定了Id蛋白是GBM-CSCs的有效分化调节剂。 Id2和Id4的过表达促进了GBM神经球细胞的谱系特异性分化,这一点可以通过诱导神经元/星形胶质细胞分化标记Tuj1和GFAP以及抑制少突胶质标记GalC来证明。 Id蛋白的过表达还降低了干细胞标志物的表达和神经球形成的可能性,而神经球的形成是癌细胞“干性”的生物学标志。我们进一步表明,Id2和Id4通过下调另一个bHLH家族成员少突神经胶质谱系相关转录因子(Olig)1和2来调节GBM神经球的分化。我们的结果为肿瘤干细胞中Id蛋白的独特功能提供了证据。 Id蛋白及其下游靶点可能成为CSC分化治疗的潜在候选者。 (《癌症科学》,2012年; 103:1028–1037)

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