Genetics Unit, Hospital Universitario Marqués de Valdecilla, 39008 Santander, Spain.
Instituto de Investigación Marqués de Valdecilla (IDIVAL), 39008 Santander, Spain.
Int J Mol Sci. 2022 Jan 11;23(2):741. doi: 10.3390/ijms23020741.
Glioblastoma (GBM) remains a major clinical challenge due to its invasive capacity, resistance to treatment, and recurrence. We have previously shown that ODZ1 contributes to glioblastoma invasion and that ODZ1 mRNA levels can be upregulated by epigenetic mechanisms in response to hypoxia. Herein, we have further studied the transcriptional regulation of ODZ1 in GBM stem cells (GSCs) under hypoxic conditions and analyzed whether HIF2α has any role in this regulation. We performed the experiments in three primary GSC cell lines established from tumor specimens. GSCs were cultured under hypoxia, treated with HIF regulators (DMOG, chetomin), or transfected with specific siRNAs, and the expression levels of ODZ1 and HIF2α were analyzed. In addition, the response of the ODZ1 promoter cloned into a luciferase reporter plasmid to the activation of HIF was also studied. The upregulation of both mRNA and protein levels of HIF2α under hypoxia conditions correlated with the expression of ODZ1 mRNA. Moreover, the knockdown of HIF2α by siRNAs downregulated the expression of ODZ1. We found, in the ODZ1 promoter, a HIF consensus binding site (GCGTG) 1358 bp from the transcription start site (TSS) and a HIF-like site (CCGTG) 826 bp from the TSS. Luciferase assays revealed that the stabilization of HIF by DMOG resulted in the increased activity of the ODZ1 promoter. Our data indicate that the HIF2α-mediated upregulation of ODZ1 helps strengthen the transcriptional control of this migration factor under hypoxia in glioblastoma stem cells. The discovery of this novel transcriptional pathway identifies new targets to develop strategies that may avoid GBM tumor invasion and recurrence.
胶质母细胞瘤(GBM)仍然是一个主要的临床挑战,因为它具有侵袭性、对治疗的抵抗力和复发。我们之前已经表明,ODZ1 有助于胶质母细胞瘤的侵袭,并且 ODZ1 mRNA 水平可以通过表观遗传机制在缺氧时上调。在此,我们进一步研究了缺氧条件下 GBM 干细胞(GSCs)中 ODZ1 的转录调控,并分析了 HIF2α 是否在这种调控中起作用。我们在从肿瘤标本中建立的三个原发性 GSC 细胞系中进行了实验。将 GSCs 在低氧条件下培养,用 HIF 调节剂(DMOG、chetomin)处理或用特异性 siRNA 转染,并分析 ODZ1 和 HIF2α 的表达水平。此外,还研究了克隆到荧光素酶报告质粒中的 ODZ1 启动子对 HIF 激活的反应。
缺氧条件下 HIF2α 的 mRNA 和蛋白水平上调与 ODZ1 mRNA 的表达相关。此外,siRNA 下调 HIF2α 的表达也下调了 ODZ1 的表达。我们在 ODZ1 启动子中发现了一个距离转录起始位点(TSS)1358 bp 的 HIF 共有结合位点(GCGTG)和一个距离 TSS 826 bp 的 HIF 样位点(CCGTG)。荧光素酶测定显示,DMOG 稳定 HIF 导致 ODZ1 启动子活性增加。
我们的数据表明,HIF2α 介导的 ODZ1 上调有助于在缺氧条件下加强胶质母细胞瘤干细胞中这种迁移因子的转录控制。发现这种新的转录途径为开发可能避免 GBM 肿瘤侵袭和复发的策略确定了新的靶点。