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首页> 外文期刊>Cell death & disease. >miR-491-5p-induced apoptosis in ovarian carcinoma depends on the direct inhibition of both BCL-XL and EGFR leading to BIM activation
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miR-491-5p-induced apoptosis in ovarian carcinoma depends on the direct inhibition of both BCL-XL and EGFR leading to BIM activation

机译:miR-491-5p诱导的卵巢癌细胞凋亡取决于直接抑制BCL-X L 和EGFR导致BIM活化

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We sought to identify miRNAs that can efficiently induce apoptosis in ovarian cancer cells by overcoming BCL-X L and MCL1 anti-apoptotic activity, using combined computational and experimental approaches. We found that miR-491-5p efficiently induces apoptosis in IGROV1-R10 cells by directly inhibiting BCL-X L expression and by inducing BIM accumulation in its dephosphorylated form. This latter effect is due to direct targeting of epidermal growth factor receptor (EGFR) by miR-491-5p and consequent inhibition of downstream AKT and MAPK signalling pathways. Induction of apoptosis by miR-491-5p in this cell line is mimicked by a combination of EGFR inhibition together with a BH3-mimetic molecule. In contrast, SKOV3 cells treated with miR-491-5p maintain AKT and MAPK activity, do not induce BIM and do not undergo cell death despite BCL-X L and EGFR downregulation. In this cell line, sensitivity to miR-491-5p is restored by inhibition of both AKT and MAPK signalling pathways. Altogether, this work highlights the potential of miRNA functional studies to decipher cell signalling pathways or major regulatory hubs involved in cell survival to finally propose the rationale design of new strategies on the basis of pharmacological combinations. Cell Death and Disease advance online publication, 9 October 2014; doi: 10.1038/cddis.2014.389
机译:我们试图通过组合计算和实验方法,通过克服BCL-XL和MCL1抗凋亡活性,鉴定可有效诱导卵巢癌细胞凋亡的miRNA。我们发现,miR-491-5p通过直接抑制BCL-XL表达并通过以其去磷酸化形式诱导BIM积累来有效诱导IGROV1-R10细胞凋亡。后一种作用归因于miR-491-5p直接靶向表皮生长因子受体(EGFR),并因此抑制了下游AKT和MAPK信号通路。 EGFR抑制与BH3模拟分子的结合可模仿miR-491-5p在此细胞系中诱导的凋亡。相反,用miR-491-5p处理的SKOV3细胞保持AKT和MAPK活性,尽管BCL-XL和EGFR下调,但不诱导BIM且不发生细胞死亡。在该细胞系中,通过抑制AKT和MAPK信号通路,恢复了对miR-491-5p的敏感性。总而言之,这项工作强调了miRNA功能研究在破译细胞信号通路或参与细胞存活的主要调控枢纽方面的潜力,从而最终根据药理学组合提出了新策略的原理设计。细胞死亡和疾病提前在线出版物,2014年10月9日; doi:10.1038 / cddis.2014.389

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