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Magnolin inhibits cell migration and invasion by targeting the ERKs/RSK2 signaling pathway

机译:Magnolin通过靶向ERKs / RSK2信号通路抑制细胞迁移和侵袭

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Background Magnolin is a natural compound abundantly found in Magnolia flos, which has been traditionally used in oriental medicine to treat headaches, nasal congestion and anti-inflammatory reactions. Our recent results have demonstrated that magnolin targets the active pockets of ERK1 and ERK2, which are important signaling molecules in cancer cell metastasis. The aim of this study is to evaluate the effects of magnolin on cell migration and to further explore the molecular mechanisms involved. Methods Magnolin-mediated signaling inhibition was confirmed by Western blotting using RSK2+/+ and RSK2?/? MEFs, A549 and NCI-H1975 lung cancer cells, and by NF-κB and Cox-2 promoter luciferase reporter assays. Inhibition of cell migration by magnolin was examined by wound healing and/or Boyden Chamber assays using JB6 Cl41 and A549 human lung cancer cells. The molecular mechanisms involved in cell migration and epithelial-to-mesenchymal transition were determined by zymography, Western blotting, real-time PCR and immunocytofluorescence. Results Magnolin inhibited NF-κB transactivation activity by suppressing the ERKs/RSK2 signaling pathway. Moreover, magnolin abrogated the increase in EGF-induced COX-2 protein levels and wound healing. In human lung cancer cells such as A549 and NCI-H1975, which harbor constitutive active Ras and EGFR mutants, respectively, magnolin suppressed wound healing and cell invasion as seen by a Boyden chamber assay. In addition, it was observed that magnolin inhibited MMP-2 and ?9 gene expression and activity. The knockdown or knockout of RSK2 in A549 lung cancer cells or MEFs revealed that magnolin targeting ERKs/RSK2 signaling suppressed epithelial-to-mesenchymal transition by modulating EMT marker proteins such as N-cadherin, E-cadherin, Snail, Vimentin and MMPs. Conclusions These results demonstrate that magnolin inhibits cell migration and invasion by targeting the ERKs/RSK2 signaling pathway.
机译:背景木兰精是在木兰中大量发现的天然化合物,传统上已在东方医学中用于治疗头痛,鼻充血和抗炎反应。我们最近的结果表明,厚朴素靶向ERK1和ERK2的活性口袋,这是癌细胞转移中的重要信号分子。这项研究的目的是评估厚朴素对细胞迁移的影响,并进一步探讨涉及的分子机制。方法采用RSK2 + / + 和RSK2 ?/? MEFs,A549和NCI-H1975肺癌细胞通过Western印迹法和NF-κB方法检测木兰蛋白介导的信号转导抑制作用。 κB和Cox-2启动子荧光素酶报告基因检测。使用JB6 Cl41和A549人肺癌细胞,通过伤口愈合和/或Boyden Chamber试验检查了厚朴素对细胞迁移的抑制作用。通过酶谱,Western印迹,实时PCR和免疫细胞荧光确定了涉及细胞迁移和上皮到间充质转化的分子机制。结果木兰蛋白通过抑制ERKs / RSK2信号通路抑制NF-κB的活化。此外,厚朴素消除了EGF诱导的COX-2蛋白水平和伤口愈合的增加。在博伊登室测定法中,厚朴素在诸如A549和NCI-H1975这样的人肺癌细胞中分别带有组成型活性Ras和EGFR突变体,它们抑制了伤口愈合和细胞侵袭。另外,观察到厚朴素抑制MMP-2和β9基因的表达和活性。敲除或敲除A549肺癌细胞或MEF中的RSK2表明,针对ERKs / RSK2信号的厚朴素可通过调节EMT标记蛋白(如N-钙黏着蛋白,E-钙黏着蛋白,Snail,波形蛋白和MMPs)抑制上皮向间充质转化。结论这些结果表明,厚朴素通过靶向ERKs / RSK2信号通路抑制细胞迁移和侵袭。

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