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Expression of MUC17 Is Regulated by HIF1α-Mediated Hypoxic Responses and Requires a Methylation-Free Hypoxia Responsible Element in Pancreatic Cancer

机译:mUC17的表达是由HIF1α介导低氧反应调控并要求在胰腺癌甲基化免费缺氧反应元件

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摘要

MUC17 is a type 1 membrane-bound glycoprotein that is mainly expressed in the digestive tract. Recent studies have demonstrated that the aberrant overexpression of MUC17 is correlated with the malignant potential of pancreatic ductal adenocarcinomas (PDACs); however, the exact regulatory mechanism of MUC17 expression has yet to be identified. Here, we provide the first report of the MUC17 regulatory mechanism under hypoxia, an essential feature of the tumor microenvironment and a driving force of cancer progression. Our data revealed that MUC17 was significantly induced by hypoxic stimulation through a hypoxia-inducible factor 1α (HIF1α)-dependent pathway in some pancreatic cancer cells (e.g., AsPC1), whereas other pancreatic cancer cells (e.g., BxPC3) exhibited little response to hypoxia. Interestingly, these low-responsive cells have highly methylated CpG motifs within the hypoxia responsive element (HRE, 5′-RCGTG-3′), a binding site for HIF1α. Thus, we investigated the demethylation effects of CpG at HRE on the hypoxic induction of MUC17. Treatment of low-responsive cells with 5-aza-2′-deoxycytidine followed by additional hypoxic incubation resulted in the restoration of hypoxic MUC17 induction. Furthermore, DNA methylation of HRE in pancreatic tissues from patients with PDACs showed higher hypomethylation status as compared to those from non-cancerous tissues, and hypomethylation was also correlated with MUC17 mRNA expression. Taken together, these findings suggested that the HIF1α-mediated hypoxic signal pathway contributes to MUC17 expression, and DNA methylation of HRE could be a determinant of the hypoxic inducibility of MUC17 in pancreatic cancer cells.
机译:MUC17是一种1型膜结合糖蛋白,主要在消化道中表达。最近的研究表明,MUC17的异常过表达与胰腺导管腺癌(PDAC)的恶性潜能相关。但是,尚未确定MUC17表达的确切调控机制。在这里,我们提供了缺氧下MUC17调控机制的首次报道,这是肿瘤微环境的基本特征,也是癌症发展的驱动力。我们的数据显示,在某些胰腺癌细胞(例如AsPC1)中,通过低氧诱导因子1α(HIF1α)依赖性途径进行的低氧刺激可显着诱导MUC17,而其他胰腺癌细胞(例如BxPC3)对低氧反应很小。有趣的是,这些低反应性细胞在缺氧反应性元件(HRE,5'-RCGTG-3')(HIF1α的结合位点)内具有高度甲基化的CpG基序。因此,我们研究了CRE在HRE上对MUC17低氧诱导的去甲基化作用。用5-氮杂-2'-脱氧胞苷处理低反应性细胞,然后再进行低氧培养,从而恢复了低氧性MUC17诱导。此外,与非癌组织相比,PDAC患者胰腺组织中HRE的DNA甲基化表现出更高的低甲基化状态,并且低甲基化也与MUC17 mRNA表达相关。综上,这些发现表明,HIF1α介导的缺氧信号通路有助于MUC17的表达,而HRE的DNA甲基化可能决定了胰腺癌细胞中MUC17的低氧诱导性。

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