首页> 美国卫生研究院文献>Bioscience Reports >The SLC34A2-ROS-HIF-1-induced up-regulation of EZH2 expression promotes proliferation and chemo-resistance to apoptosis in colorectal cancer
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The SLC34A2-ROS-HIF-1-induced up-regulation of EZH2 expression promotes proliferation and chemo-resistance to apoptosis in colorectal cancer

机译:SLC34A2-ROS-HIF-1诱导的EZH2表达上调促进结直肠癌的增殖和对细胞凋亡的化学抗性

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摘要

Growing evidence has uncovered that SLC34A2 plays an evident role in the progression in several types of tumors. However, the biological function and underlying molecular mechanisms of SLC34A2 remain largely unknown. Here, we indicated that SLC34A2 expression was markedly increased in SW480 and HT29 cell line cells compared with that in normal colorectal epithelial cell line cells. Array analysis displayed that the expression of enhancer of zeste 2 (EZH2) decreased considerably when SLC34A2 was knocked down. We demonstrated that SLC34A2 induced EZH2 expression and activated its promoter activity. Serial 5′ deletion and site-directed mutagenesis revealed that the induction of EZH2 expression by SLC34A2 was dependent upon the hypoxia-inducible factor 1 (HIF-1)-2 binding site directly within EZH2 promoter. Moreover, HIF-1 activation was proved essential for SLC34A2-induced EZH2 expression. Reactive oxygen species (ROS) generation contributed to the stabilization of HIF-1α by leading to the binding of HIF-1α to the EZH2 promoter, which resulted in increased EZH2 expression. Additionally, we showed that the inhibition of both HIF-1α expression and ROS generation by YC-1 or BHA, respectively, decreased SLC34A2-induced EZH2 overexpression. Significantly, SLC34A2-induced EZH2 overexpression promoted the proliferation and chemo-resistance to apoptosis in colorectal cancer (CRC) cells in vitro and in vivo. Altogether, we conclude that the SLC34A2-ROS-HIF-1-induced overexpression of EZH2 promotes CRC cells proliferation and chemo-resistance to apoptosis. SLC34A2-ROS-HIF-1-EZH2 signaling pathway might serve as a novel therapeutic target against CRC.
机译:越来越多的证据表明,SLC34A2在几种类型的肿瘤的进展中起着明显的作用。但是,SLC34A2的生物学功能和潜在的分子机制仍是未知之数。在这里,我们表明与正常结直肠上皮细胞系细胞相比,SW480和HT29细胞系细胞中SLC34A2表达显着增加。阵列分析显示,敲低SLC34A2后,zeste 2(EZH2)增强子的表达明显下降。我们证明SLC34A2诱导EZH2表达并激活其启动子活性。连续的5'缺失和定点诱变揭示SLC34A2对EZH2表达的诱导直接取决于EZH2启动子内的缺氧诱导因子1(HIF-1)-2结合位点。此外,HIF-1激活被证明对SLC34A2诱导的EZH2表达至关重要。活性氧(ROS)的产生通过导致HIF-1α与EZH2启动子结合而有助于HIF-1α的稳定化,从而导致EZH2表达增加。此外,我们表明,分别由YC-1或BHA抑制HIF-1α表达和抑制ROS生成,可降低SLC34A2诱导的EZH2过表达。重要的是,在体外和体内,SLC34A2诱导的EZH2过表达促进了结直肠癌细胞(CRC)细胞的增殖和对细胞凋亡的化学抗性。总之,我们得出的结论是,SLC34A2-ROS-HIF-1诱导的EZH2过度表达促进CRC细胞增殖和对细胞凋亡的化学抗性。 SLC34A2-ROS-HIF-1-EZH2信号通路可能是针对CRC的新型治疗靶点。

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