Kedhari Sundaram Madhumitha, Haque Shafiul, Somvanshi Pallavi, Bhardwaj Tulika, Hussain Arif
School of Life Sciences, Manipal Academy of Higher Education, PO Box 345050, Dubai, United Arab Emirates.
Research and Scientific Studies Unit, College of Nursing and Allied Health Sciences, Jazan University, Jazan, 45142 Saudi Arabia.
3 Biotech. 2020 Nov;10(11):484. doi: 10.1007/s13205-020-02473-1. Epub 2020 Oct 23.
This study examines the effect of epigallocatechin gallate (EGCG) on signaling pathways, epigenetic modulators and tumour suppressor genes in cervical cancer cells, HeLa. qRT-PCR, ELISA-based enzymatic assays and in silico studies were used to catalogue the modulation of these genes by EGCG treatment. qRT-PCR showed transcriptional modulation of several epigenetic modifiers including DNA methyltransferases and histone modifiers (DNMT1, DNMT3B, DNMT3A, AURKA, AURKC, AURKB, KDM4A, KDM5C, PRMT7, PRMT6, UBE2B, HDAC5, HDAC6, HDAC7 and HDAC11. Furthermore, ELISA-based assays showed that EGCG lowered the activity of DNA methyltransferases, histone deacetylases and histone methyltransferases (H3K9). Molecular docking results suggests that EGCG may competitively inhibit some epigenetic enzymes (DNMT1, DNMT3A, HDAC2, HDAC3, HDAC4, HDAC7 and EZH2). A functional outcome of these epigenetic alterations could be inferred from the reversal of promoter hypermethylation of tumour suppressor genes by quantitative methylation array and transcriptional re-expression of tumour suppressor genes including and by qRT-PCR. Downregulation of key signaling moieties of PI3K, Wnt and MAPK pathways, cell cycle regulators, metastasis regulators and pro-inflammatory moieties including and was also observed. In silico protein-protein interaction network analysis followed by KEGG analysis discerned the active participation of gene sets towards cancer pathways. This study comprehensively explains EGCG's anti-cancer mechanism via the synchronized transcriptional alteration of several molecular targets across different signaling pathways and reversal of tumour suppressor gene silencing through modulation of epigenetic enzymes.
本研究考察了表没食子儿茶素没食子酸酯(EGCG)对子宫颈癌细胞HeLa中信号通路、表观遗传调节剂和肿瘤抑制基因的影响。采用qRT-PCR、基于ELISA的酶促分析和计算机模拟研究来记录EGCG处理对这些基因的调节作用。qRT-PCR显示了几种表观遗传修饰因子的转录调节,包括DNA甲基转移酶和组蛋白修饰因子(DNMT1、DNMT3B、DNMT3A、AURKA、AURKC、AURKB、KDM4A、KDM5C、PRMT7、PRMT6、UBE2B、HDAC5、HDAC6、HDAC7和HDAC11)。此外,基于ELISA的分析表明,EGCG降低了DNA甲基转移酶、组蛋白去乙酰化酶和组蛋白甲基转移酶(H3K9)的活性。分子对接结果表明,EGCG可能竞争性抑制某些表观遗传酶(DNMT1、DNMT3A、HDAC2、HDAC3、HDAC4、HDAC7和EZH2)。通过定量甲基化阵列和qRT-PCR对肿瘤抑制基因启动子高甲基化的逆转以及包括 和 在内的肿瘤抑制基因的转录重新表达,可以推断出这些表观遗传改变的功能结果。还观察到PI3K、Wnt和MAPK信号通路的关键信号分子、细胞周期调节因子、转移调节因子和促炎分子(包括 和 )的下调。计算机模拟蛋白质-蛋白质相互作用网络分析随后进行KEGG分析,识别了基因集对癌症通路的积极参与。本研究通过不同信号通路中多个分子靶点的同步转录改变以及通过调节表观遗传酶逆转肿瘤抑制基因沉默,全面解释了EGCG的抗癌机制。