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首页> 外文期刊>Stem cells and development >Transcriptional repression of mad-max complex by human umbilical cord blood stem cells downregulates extracellular signal-regulated kinase in glioblastoma
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Transcriptional repression of mad-max complex by human umbilical cord blood stem cells downregulates extracellular signal-regulated kinase in glioblastoma

机译:人脐带血干细胞对mad-max复合物的转录抑制下调胶质母细胞瘤中的细胞外信号调节激酶

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Previously, we have shown that human umbilical cord blood stem cell (hUCBSC) treatment downregulate cyclin D1 in glioma cells. To study the cell cycle progression and investigate the upstream molecules regulating cyclin D1 expression, we analyzed the involvement of extracellular signal-regulated kinase (ERK) and its functionality after treatment with hUCBSC. We observed downregulation of pERK after hUCBSC treatment at both transcriptional and translational levels. Increased translocation of ERK from cytoplasm to the nucleus was observed in glioma cells, whereas hUCBSC cocultures with glioma cells showed suppressed nuclear translocation. This finding suggests that hUCBSC regulates ERK by suppressing its phosphorylation at phospho-Thr 202/Tyr204 retarding pERK nuclear translocation. ERK promoter analysis has shown c-Myc binding sites, indicative of possible transcriptional interactions that regulate cyclin D1 and ERK expression levels. Treatment of U251 and 5310 glioma cells with U0126, a MEK/ERK inhibitor receded pERK and c-Myc levels. In another experiment, U251 and 5310 cells treated with 10074-G5, c-Myc/Max inhibitor displayed reduction in pERK and c-Myc levels suggestive of a positive feedback loop between ERK/c-Myc/Max molecules. In the present study, we show that glioma cells exhibit abundant c-Myc expression and increased c-Myc/Max activity. In contrast, the glioma cells cocultured with hUCBSC demonstrated high Mad1 expression that competitively binds to Max to repress the c-Myc/Max mediated gene transcription. Our studies thus elucidate the potential role of hUCBSC in controlling glioma cell cycle progression and invasion by limiting Max binding to c-Myc, thus regulating the expression of glioma cell cycle and invasion associated molecules such as ERK, integrins via increased levels of Mad1 expression.
机译:以前,我们已经表明,人脐带血干细胞(hUCBSC)处理可下调神经胶质瘤细胞中的细胞周期蛋白D1。为了研究细胞周期进程并研究调节cyclin D1表达的上游分子,我们分析了hUCBSC处理后细胞外信号调节激酶(ERK)的参与及其功能。我们在hUCBSC处理后观察到在转录和翻译水平下pERK的下调。在胶质瘤细胞中观察到ERK从细胞质到核的转运增加,而hUCBSC与胶质瘤细胞的共培养显示核转运受到抑制。该发现表明,hUCBSC通过抑制其在磷酸-Thr 202 / Tyr204上的磷酸化来抑制ERK核易位,从而调节ERK。 ERK启动子分析显示c-Myc结合位点,表明可能调节细胞周期蛋白D1和ERK表达水平的转录相互作用。用MEK / ERK抑制剂U0126治疗U251和5310胶质瘤细胞后,pERK和c-Myc水平下降。在另一个实验中,用10074-G5 c-Myc / Max抑制剂处理的U251和5310细胞显示pERK和c-Myc水平降低,表明ERK / c-Myc / Max分子之间存在正反馈回路。在本研究中,我们显示神经胶质瘤细胞表现出丰富的c-Myc表达和增加的c-Myc / Max活性。相比之下,与hUCBSC共培养的神经胶质瘤细胞显示出高Mad1表达,该表达与Max竞争性结合,从而抑制c-Myc / Max介导的基因转录。因此,我们的研究通过限制Max与c-Myc的结合来阐明hUCBSC在控制神经胶质瘤细胞周期进程和侵袭中的潜在作用,从而通过增加Mad1表达水平来调节神经胶质瘤细胞周期和侵袭相关分子(如ERK,整联蛋白)的表达。

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