Université Côte D'Azur, CNRS, INSERM, Institut de Biologie Valrose, Nice, France.
Service de Neurochirurgie, Hôpital Pasteur, CHU de Nice, France.
Cancer Res. 2020 Aug 15;80(16):3236-3250. doi: 10.1158/0008-5472.CAN-19-0855. Epub 2020 May 4.
There is great interest in understanding how the cancer stem cell population may be maintained in solid tumors. Here, we show that tumor cells exhibiting stem-like properties and expression of pluripotency markers NANOG and OCT4 can arise from original differentiated tumor cells freshly isolated from human glioblastomas (GBM) and that have never known any serum culture conditions. Induction of EGR1 by EGFR/ERK signaling promoted cell conversion from a less aggressive, more differentiated cellular state to a self-renewing and strongly tumorigenic state, expressing NANOG and OCT4. Expression of these pluripotency markers occurred before the cells re-entered the cell cycle, demonstrating their capacity to change and dedifferentiate without any cell divisions. In differentiated GBM cells, ERK-mediated repression of miR-199a-3p induced EGR1 protein expression and triggered dedifferentiation. Overall, this signaling pathway constitutes an ERK-mediated "toggle switch" that promotes pluripotency marker expression and stem-like features in GBM cells. SIGNIFICANCE: This study defines an ERK-mediated molecular mechanism of dedifferentiation of GBM cells into a stem-like state, expressing markers of pluripotency..
人们对了解实体肿瘤中癌症干细胞群体如何维持的问题很感兴趣。在这里,我们表明,表现出干细胞特性和多能性标志物 NANOG 和 OCT4 表达的肿瘤细胞可以从新分离的人胶质母细胞瘤(GBM)原始分化肿瘤细胞中产生,并且这些细胞从未接触过任何血清培养条件。EGFR/ERK 信号诱导 EGR1 的表达,促进细胞从侵袭性较弱、分化程度较高的细胞状态向自我更新和强致瘤性状态的转化,表达 NANOG 和 OCT4。这些多能性标志物的表达发生在细胞重新进入细胞周期之前,表明它们在没有任何细胞分裂的情况下改变和去分化的能力。在分化的 GBM 细胞中,ERK 介导的 miR-199a-3p 抑制诱导 EGR1 蛋白表达并引发去分化。总的来说,这条信号通路构成了一个 ERK 介导的“拨动开关”,促进 GBM 细胞中多能性标志物的表达和干细胞样特征。意义:本研究定义了一个 ERK 介导的胶质母细胞瘤细胞去分化为具有多能性标志物表达的干细胞样状态的分子机制。