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Effects of miR-106b-3p on cell proliferation and epithelial-mesenchymal transition and targeting of ZNRF3 in esophageal squamous cell carcinoma

机译:miR-106b-3p对食管鳞状细胞癌细胞增殖和上皮-间质转化以及ZNRF3靶向的影响

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摘要

Previous studies have demonstrated that the dysregulation of microRNAs (miRs) is frequently associated with cancer progression. Deregulation of miR-106b-3p has been observed in various types of human cancer. However, the biological function of miR-106b-3p in esophageal squamous cell carcinoma (ESCC) remains unclear. Thus, the aim of this study was to investigate the role of miR-106b-3p in ESCC. In the current study, the results indicated that miR-106b-3p was upregulated in ESCC cell lines and tissues. An increase in miR-106b-3p using miR mimics significantly promoted the proliferation of ESCC cells in vitro. Furthermore, the results demonstrated that miR-106b-3p overexpression promoted migration, invasion and epithelial-mesenchymal transition (EMT) of ESCC cells. In addition, zinc and ring finger 3 (ZNRF3) was identified as a target of miR-106b-3p in ESCC cells, and the ZNRF3 expression level was inversely associated with miR-106b-3p. It was also demonstrated that miR-106b-3p has a role in EMT by regulating Wnt/β-catenin signaling pathway in ESCC. In conclusion, these data suggested that miR-106b-3p promotes cell proliferation and invasion, partially by downregulating ZNRF3 and inducing EMT via Wnt/β-catenin signaling in ESCC cells. Thus, miR-106b-3p and ZNRF3 may be novel molecular targets for the future treatment of ESCC.
机译:先前的研究表明,microRNA(miRs)的失调通常与癌症进展有关。在各种类型的人类癌症中均观察到miR-106b-3p的失调。但是,miR-106b-3p在食管鳞状细胞癌(ESCC)中的生物学功能仍不清楚。因此,本研究的目的是研究miR-106b-3p在ESCC中的作用。在当前的研究中,结果表明miR-106b-3p在ESCC细胞系和组织中上调。使用miR模仿物增加miR-106b-3p可以显着促进体外ESCC细胞的增殖。此外,结果表明,miR-106b-3p过表达促进了ESCC细胞的迁移,侵袭和上皮-间质转化(EMT)。此外,锌和无名指3(ZNRF3)被确定为ESCC细胞中miR-106b-3p的靶标,并且ZNRF3表达水平与miR-106b-3p呈负相关。还证明了miR-106b-3p通过调节ESCC中的Wnt /β-catenin信号传导途径而在EMT中起作用。总之,这些数据表明,miR-106b-3p部分通过下调ZNRF3并通过Wnt /β-catenin信号传导在ESCC细胞中诱导EMT来促进细胞增殖和侵袭。因此,miR-106b-3p和ZNRF3可能是将来治疗ESCC的新型分子靶标。

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