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首页> 外文期刊>Cellular Physiology and Biochemistry >Ginsenoside 20(S)-Rg3 Inhibits the Warburg Effect Via Modulating DNMT3A/ MiR-532-3p/HK2 Pathway in Ovarian Cancer Cells
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Ginsenoside 20(S)-Rg3 Inhibits the Warburg Effect Via Modulating DNMT3A/ MiR-532-3p/HK2 Pathway in Ovarian Cancer Cells

机译:人参皂甙20(S)-Rg3通过调节DNMT3A / MiR-532-3p / HK2途径抑制卵巢癌细胞的Warburg效应

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Background/Aims The Warburg effect is one of the main energy metabolism features supporting cancer cell growth. 20(S)-Rg3 exerts anti-tumor effect on ovarian cancer partly by inhibiting the Warburg effect. microRNAs are important regulators of the Warburg effect. However, the microRNA regulatory network mediating the anti-Warburg effect of 20(S)-Rg3 was largely unknown. Methods microRNA deep sequencing was performed to identify the 20(S)-Rg3-influenced microRNAs in SKOV3 ovarian cancer cells. miR-532-3p was overexpressed by mimic532-3p transfection in SKOV3 and A2780 cells or inhibited by inhibitor532-3p transfection in 20(S)-Rg3-treated cells to examine the changes in HK2 and PKM2 expression, glucose consumption, lactate production and cell growth. Dual-luciferase reporter assay was conducted to verify the direct binding of miR-532-3p to HK2. The methylation status in the promoter region of pre-miR-532-3p gene was examined by methylation-specific PCR. Expression changes of key molecules controlling DNA methylation including DNMT1, DNMT3A, DNMT3B, and TET1-3 were examined in 20(S)-Rg3-treated cells. DNMT3A was overexpressed in 20(S)-Rg3-treated cells to examine its influence on miR-532-3p level, HK2 and PKM2 expression, glucose consumption and lactate production. Results Deep sequencing results showed that 11 microRNAs were increased and 9 microRNAs were decreased by 20(S)-Rg3 in SKOV3 cells, which were verified by qPCR. More than 2-fold increase of miR-532-3p was found in 20(S)-Rg3-treated SKOV3 cells. Forced expression of miR-532-3p reduced HK2 and PKM2 expression, glucose consumption and lactate production in SKOV3 and A2780 ovarian cancer cells. Inhibition of miR-532-3p antagonized the suppressive effect of 20(S)-Rg3 on HK2 and PKM2 expression, glucose consumption and lactate production in ovarian cancer cells. Dual-luciferase reporter assay showed that miR-532-3p directly suppressed HK2 rather than PKM2. miR-532-3p level was controlled by the methylation in the promoter region of its host gene. 20(S)-Rg3 inhibited DNMT3A expression while exerted insignificant effect on DNMT1, DNMT3B and TET1-3. 20(S)-Rg3 reversed DNMT3A-mediated methylation in the promoter of the host gene of miR-532-3p, and thus elevated miR-532-3p level followed by suppression of HK2 and PKM2 expression, glucose consumption and lactate production. Conclusions 20(S)-Rg3 modulated microRNAs to exert the anti-tumor effect in ovarian cancer. 20(S)-Rg3 lessened the DNMT3A-mediated methylation and promoted the suppression of miR-532-3p on HK2 to antagonize the Warburg effect of ovarian cancer cells.
机译:背景/目的Warburg效应是支持癌细胞生长的主要能量代谢特征之一。 20(S)-Rg3部分通过抑制Warburg效应对卵巢癌发挥抗肿瘤作用。 microRNA是Warburg效应的重要调节因子。但是,介导20(S)-Rg3的抗Warburg效应的microRNA调控网络在很大程度上是未知的。方法进行microRNA深度测序,以鉴定SKOV3卵巢癌细胞中20(S)-Rg3影响的microRNA。检查HK2和PKM2表达,葡萄糖消耗,乳酸盐产生和改变的变化在20(S)-Rg3处理的细胞中通过mimic532-3p转染在SKOV3和A2780细胞中过表达miR-532-3p,或在抑制剂532-3p转染中抑制miR-532-3p。细胞生长。进行双荧光素酶报告基因测定以验证miR-532-3p与HK2的直接结合。通过甲基化特异性PCR检查了premiR-532-3p基因的启动子区域中的甲基化状态。在20(S)-Rg3处理的细胞中检查了控制DNA甲基化的关键分子(包括DNMT1,DNMT3A,DNMT3B和TET1-3)的表达变化。 DNMT3A在20(S)-Rg3处理的细胞中过表达,以检查其对miR-532-3p水平,HK2和PKM2表达,葡萄糖消耗和乳酸产生的影响。结果深度测序结果表明,SKOV3细胞中20(S)-Rg3可增加11个微小RNA,减少9个微小RNA,经qPCR验证。在20(S)-Rg3处理的SKOV3细胞中发现miR-532-3p的增加超过2倍。 miR-532-3p的强制表达降低了SKOV3和A2780卵巢癌细胞中HK2和PKM2的表达,葡萄糖的消耗和乳酸的产生。抑制miR-532-3p拮抗20(S)-Rg3对卵巢癌细胞HK2和PKM2表达,葡萄糖消耗和乳酸产生的抑制作用。双荧光素酶报告基因测定显示,miR-532-3p直接抑制HK2而不是PKM2。 miR-532-3p水平受其宿主基因启动子区域的甲基化控制。 20(S)-Rg3抑制DNMT3A的表达,而对DNMT1,DNMT3B和TET1-3的影响不明显。 20(S)-Rg3逆转了DNMT3A介导的miR-532-3p宿主基因启动子中的甲基化,从而提高了miR-532-3p的水平,随后抑制了HK2和PKM2的表达,葡萄糖的消耗和乳酸的产生。结论20(S)-Rg3调控的microRNA在卵巢癌中具有抗肿瘤作用。 20(S)-Rg3减少了DNMT3A介导的甲基化,并促进了HK2上miR-532-3p的抑制,从而拮抗卵巢癌细胞的Warburg效应。

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