Department of Laboratory Medicine, First Affiliated Hospital of Gannan Medical University, Ganzhou, Jiangxi, P.R. China.
Department of Information Technology, First Affiliated Hospital of Gannan Medical University, Ganzhou, Jiangxi, P.R. China.
Oncol Res. 2018 Aug 23;26(7):1055-1062. doi: 10.3727/096504018X15152056890500. Epub 2018 Jan 10.
HIF-2α knockdown inhibits proliferation, arrests the cell cycle, and promotes apoptosis and autophagy under hypoxic conditions in cervical cancer. However, the upstream regulatory mechanism of HIF-2α expression is unclear. MicroRNAs (miRNAs) degrade target mRNAs by binding to the 3'-untranslated region of mRNAs. In this study, we investigated the role of miRNAs in the regulation of HIF-2α expression in cervical cancer under hypoxic conditions. miRNAs regulating HIF-2α expression were predicted using TargetScan and miRanda and were determined in cervical cancer under hypoxic conditions by qRT-PCR. Additionally, the targeted regulation of HIF-2α by miR-519d-3p was evaluated by Western blot and luciferase reporter assays. Effects of miR-519d-3p and HIF-2α on cell proliferation, cell cycle, and apoptosis were analyzed by CCK-8 and flow cytometry assays, respectively. miR-106a-5p, miR-17-5p, miR-519d-3p, miR-526b-3p, and miR-20b-5p are potentially regulatory miRNAs that bound to the HIF-2α 3'-untranslated region as per TargetScan and miRanda predictions. Expression of the five miRNAs was inhibited in HeLa cells under hypoxic conditions compared to normoxic conditions, and the expression of miR-519d-3p was lower than that of other miRNAs. Luciferase reporter assays showed that HIF-2α was a target of miR-519d-3p. Additionally, miR-519d-3p overexpression inhibited cell proliferation, arrested the cell cycle transition from the G1 stage to the S stage, and promoted cell apoptosis under hypoxic conditions in cervical cancer. HIF-2α overexpression partially reversed the effect of miR-519d-3p. In conclusion, miR-519d-3p overexpression suppressed proliferation, inhibited the cell cycle, and promoted apoptosis of HeLa cells by targeting HIF-2α under hypoxic conditions.
缺氧条件下 HIF-2α 敲低抑制宫颈癌增殖,阻滞细胞周期,促进细胞凋亡和自噬。然而,HIF-2α 表达的上游调控机制尚不清楚。微小 RNA(miRNA)通过与 mRNA 的 3'-非翻译区结合来降解靶 mRNA。在这项研究中,我们研究了 miRNA 在缺氧条件下宫颈癌中 HIF-2α 表达的调控作用。使用 TargetScan 和 miRanda 预测调节 HIF-2α 表达的 miRNA,并通过 qRT-PCR 确定在缺氧条件下宫颈癌中的 miRNA。此外,通过 Western blot 和荧光素酶报告基因检测评估 HIF-2α 受 miR-519d-3p 的靶向调控。通过 CCK-8 和流式细胞术检测 miR-519d-3p 和 HIF-2α 对细胞增殖、细胞周期和细胞凋亡的影响。miR-106a-5p、miR-17-5p、miR-519d-3p、miR-526b-3p 和 miR-20b-5p 是根据 TargetScan 和 miRanda 预测与 HIF-2α 3'-非翻译区结合的潜在调节 miRNA。与常氧条件相比,缺氧条件下 HeLa 细胞中这五种 miRNA 的表达受到抑制,miR-519d-3p 的表达低于其他 miRNA。荧光素酶报告基因检测表明 HIF-2α 是 miR-519d-3p 的靶标。此外,miR-519d-3p 过表达抑制缺氧条件下宫颈癌的细胞增殖,阻滞细胞周期从 G1 期向 S 期的过渡,并促进细胞凋亡。HIF-2α 过表达部分逆转了 miR-519d-3p 的作用。总之,miR-519d-3p 过表达通过靶向 HIF-2α 抑制缺氧条件下 HeLa 细胞的增殖,抑制细胞周期,并促进细胞凋亡。