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A novel AP-1/miR-101 regulatory feedback loop and its implication in the migration and invasion of hepatoma cells

机译:新型AP-1 / miR-101调节反馈环及其在肝癌细胞迁移和侵袭中的意义

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MicroRNA-101 (miR-101) is frequently downregulated in various cancers. To date, the regulatory networks of miR-101 remain obscure. In this study, we demonstrated that miR-101 was mainly transcribed from human miR-101-2 and mouse miR-101-bgene loci. Subsequent analyses revealed that activator protein-1 (AP-1) directly binded to the -17.4 to -16.4 k region upstream of pre-miR-101-2 and activated the expression of miR-101. On the other hand, miR-101 could inhibit the expression of ERK2 and c-Fos, two key factors of the AP-1 pathway, by binding to their 3'-UTRs. Furthermore, reintroduction of miR-101 efficiently suppressed the AP-1 activity and pri-miR-101-2 transcription. These data thus suggest a novel AP-1/miR-101 regulatory circuitry, that is, AP-1 promotes the transcription of miR-101, whereas the expression of miR-101 reduces the level of ERK2 and c-Fos and thereby attenuates the AP-1 signaling. Further investigation disclosed that the AP-1 activator TPA-induced MMP9 activity and the TPA-promoted migration and invasion of hepatoma cells were significantly attenuated by miR-101 but were enhanced by miR-101 inhibitor. Our results suggest that the AP-1/miR-101 feedback loop may prevent the excessive activation of metastatic signals imposed by ERK2/AP-1 and highlight the biological significance of miR-101 downregulation in cancer metastasis.
机译:MicroRNA-101(miR-101)在各种癌症中经常被下调。迄今为止,miR-101的调控网络仍然不清楚。在这项研究中,我们证明了miR-101主要从人miR-101-2和小鼠miR-101-b基因位点转录而成。随后的分析表明,激活蛋白1(AP-1)直接与premiR-101-2上游的-17.4至-16.4 k区结合,并激活了miR-101的表达。另一方面,miR-101可以通过与其3'-UTR结合来抑制ERK2和c-Fos的表达,这是AP-1途径的两个关键因素。此外,miR-101的重新导入有效抑制了AP-1活性和pri-miR-101-2转录。这些数据因此暗示了一种新颖的AP-1 / miR-101调节电路,即AP-1促进了miR-101的转录,而miR-101的表达降低了ERK2和c-Fos的水平,从而减弱了ERK2和c-Fos的水平。 AP-1信令。进一步的研究表明,miR-101显着减弱了AP-1激活剂TPA诱导的MMP9活性以及TPA促进的肝癌细胞迁移和侵袭,但miR-101抑制剂增强了该活性。我们的结果表明,AP-1 / miR-101反馈回路可以防止ERK2 / AP-1施加的转移信号的过度激活,并突出miR-101下调在癌症转移中的生物学意义。

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