Henan Key Laboratory of Cancer Epigenetics, Cancer Institute, Henan, China.
Clinical Laboratory, Henan University of Science and Technology First Affiliated Hospital and Clinical Medical College, Luoyang 471003, Henan, China.
Cancer Biomark. 2017 Dec 12;21(1):203-210. doi: 10.3233/CBM-170658.
Glioma-associated oncogene homolog 1 (Gli1) in Hedgehog signal pathway regulates Cyclin D1 expression, cell cycle or proliferation modulation. Esophageal cancer patients had significantly elevated Gli1 expression, which is related with survival and prognosis. It has been demonstrated that the level of miR-150 was decreased in esophageal cancer patients compared to normal control. As a complementary relationship exists between miR-150 and 3'-UTR of Gli1, this study investigated if miR-150 played a role in regulating Gli1 expression, and proliferation or cell cycle of esophageal cancer cells.
Esophageal squamous cell carcinoma (ESCC) patients from our hospital were recruited to collect tumor and adjacent tissues for miR-150 and Gli1 expression. Esophageal carcinoma cell line EC9706 and normal esophageal epithelial cell line HEEC were compared for expression of miR-150, Gli1 and Cyclin D1. Dual luciferase reporter gene assay examined the targeted relationship between miR-150 and 3'-UTR of Gli1. In vitro cultured EC9706 cells were treated with miR-150 mimic, si-Gli1 or the combination of miR-150 mimic and si-Gli1, respectively, to check their gene expression, cell cycle and proliferation.
ESCC tissues had significantly higher Gli1 expression and lower miR-150 expression. EC9706 cell also had higher Gli1 expression than that in HEEC, whilst miR-150 was down-regulated. Via targeting 3'-UTR of Gli1 gene, miR-150 inhibited its expression. Transfection of miR-150 mimic, si-Gli1 or the combination of miR-150 mimic and si-Gli1, respectively, remarkably decreased expression of Gli1 and Cyclin D1 expression in EC9706 cells, whose cell cycle arresting at G0/G1 phase was enhanced with weakened proliferation.
MiR-150 can induce G0/G1 cell cycle arresting and weaken proliferation of esophageal carcinoma cells via targeted inhibition on Gli1 and downstream expression of Cyclin D1.
Hedgehog 信号通路中的Gli 癌基因同源物 1(Gli1)调节细胞周期或增殖调节 Cyclin D1 的表达。食管鳞癌患者的 Gli1 表达明显升高,与生存和预后相关。已经证明,与正常对照相比,食管癌患者的 miR-150 水平降低。由于 miR-150 和 Gli1 3'-UTR 之间存在互补关系,因此本研究探讨了 miR-150 是否在调节 Gli1 表达以及食管癌细胞的增殖或细胞周期中发挥作用。
从我院收集食管鳞癌(ESCC)患者的肿瘤和相邻组织,用于检测 miR-150 和 Gli1 的表达。比较食管癌细胞系 EC9706 和正常食管上皮细胞系 HEEC 中 miR-150、Gli1 和 Cyclin D1 的表达。双荧光素酶报告基因检测分析 miR-150 与 Gli1 3'-UTR 之间的靶向关系。体外培养 EC9706 细胞,分别用 miR-150 模拟物、si-Gli1 或 miR-150 模拟物和 si-Gli1 的组合处理,检测其基因表达、细胞周期和增殖情况。
ESCC 组织中 Gli1 表达明显升高,miR-150 表达明显降低。EC9706 细胞中 Gli1 表达也高于 HEEC,而 miR-150 下调。通过靶向 Gli1 基因的 3'-UTR,miR-150 抑制其表达。转染 miR-150 模拟物、si-Gli1 或 miR-150 模拟物和 si-Gli1 的组合,分别显著降低了 EC9706 细胞中 Gli1 和 Cyclin D1 的表达,使细胞周期停滞在 G0/G1 期,增殖能力减弱。
miR-150 通过靶向抑制 Gli1 及其下游 Cyclin D1 的表达,诱导食管癌细胞 G0/G1 细胞周期停滞和减弱增殖。