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Gene regulation mediated by microRNAs in response to green tea polyphenol EGCG in mouse lung cancer

机译:小鼠肺癌中绿茶多酚EGCG致响应微稻草介导的基因调节

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Background Epigallocatechin-3-gallate (EGCG) has been demonstrated to inhibit cancer in experimental studies through its antioxidant activity and modulations on cellular functions by binding specific proteins. We demonstrated previously that EGCG upregulates the expression of microRNA (i.e. miR-210) by binding HIF-1α, resulting in reduced cell proliferation and anchorage-independent growth. However, the binding affinities of EGCG to HIF-1α and many other targets are higher than the EGCG plasma peak level in experimental animals administered with high dose of EGCG, raising a concern whether the microRNA regulation by HIF-1α is involved in the anti-cancer activity of EGCG in vivo . Results We employed functional genomic approaches to elucidate the role of microRNA in the EGCG inhibition of tobacco carcinogen-induced lung tumors in A/J mice. By analysing the microRNA profiles, we found modest changes in the expression levels of 21 microRNAs. By correlating these 21 microRNAs with the mRNA expression profiles using the computation methods, we identified 26 potential targeted genes of the 21 microRNAs. Further exploration using pathway analysis revealed that the most impacted pathways of EGCG treatment are the regulatory networks associated to AKT, NF-κB, MAP kinases, and cell cycle, and the identified miRNA targets are involved in the networks of AKT, MAP kinases and cell cycle regulation Conclusions These results demonstrate that the miRNA-mediated regulation is actively involved in the major aspects of the anti-cancer activity of EGCG in vivo .
机译:背景技术EPigallocaTechin-3-gallate(EGCG)已经证明通过其抗氧化活性和通过结合特异性蛋白质对细胞功能的调节来抑制癌症。我们以前展示了EGCG通过结合HIF-1α来提动MicroRNA(即miR-210)的表达,导致细胞增殖降低和无关的生长。然而,EGCG与HIF-1α的结合亲和力和许多其他靶标在施用高剂量的EGCG中的实验动物中的EGCG血浆峰水平,提出了HIF-1α的微小RNA调节是否参与抗议者。 egcg癌症活性在体内。结果我们采用功能基因组方法来阐明MicroRNA在A / J小鼠中EGCG癌症诱导肺肿瘤中的作用。通过分析MicroRNA配置文件,我们发现21 microRNA的表达水平的更改变化。通过使用计算方法将这21个MicroRNA与mRNA表达谱相关联,我们鉴定了21个MicroRNA的26个潜在的靶向基因。使用途径分析的进一步探索显示,EGCG治疗的最受影响的途径是与AKT,NF-κB,MAP激酶和细胞周期相关的调节网络,并且鉴定的miRNA靶涉及AKT,MAP激酶和细胞网络循环调节结论这些结果表明,MiRNA介导的调节积极参与eGCG在体内抗癌活性的主要方面。

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