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Stat3-coordinated Lin-28–let-7–HMGA2 and miR-200–ZEB1 circuits initiate and maintain oncostatin M-driven epithelial–mesenchymal transition

机译:Stat3协调的Lin-28–let-7–HMGA2和miR-200–ZEB1回路启动并维持制瘤素M驱动的上皮-间质转化

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Inflammation can act as a crucial mediator of epithelial-to-mesenchymal transition (EMT). In this study, we show that oncostatin M (OSM) is expressed in an autocrine/paracrine fashion in invasive breast carcinoma. OSM stimulation promotes spontaneous lung metastasis of MCF-7 xenografts in nude mice. A conspicuous epigenetic transition was induced by OSM stimulation not only in breast cancer cell lines but also in MCF-7 xenografts in nude mice. The expression of miR-200 and let-7 family members in response to OSM stimulation was downregulated in a signal transducer and activator of transcription factor 3 (Stat3)-dependent manner, resulting in comprehensive alterations of the transcription factors and oncoproteins targeted by these microRNAs. Inhibition of Stat3 activation or the ectopic expression of let-7 and miR-200 effectively reversed the mesenchymal phenotype of breast cancer cells. Stat3 promotes the transcription of Lin-28 by directly binding to the Lin-28 promoter, resulting in the repression of let-7 expression and concomitant upregulation of the let-7 target, high-mobility group A protein 2 (HMGA2). Knock down of HMGA2 significantly impairs OSM-driven EMT. Our data indicate that downregulation of let-7 and miR-200 levels initiates and maintains OSM-induced EMT phenotypes, and HMGA2 acts as a master switch of OSM-induced EMT. These findings highlight the importance of Stat3-coordinated Lin-28B鈥搇et-7鈥揌MGA2 and miR-200鈥揨EB1 circuits in the cytokine-mediated phenotypic reprogramming of breast cancer cells.
机译:炎症可以作为上皮-间质转化(EMT)的关键介质。在这项研究中,我们表明,抑癌素M(OSM)在浸润性乳腺癌中以自分泌/旁分泌方式表达。 OSM刺激促进裸鼠MCF-7异种移植的自发性肺转移。 OSM刺激不仅在乳腺癌细胞系中而且在裸鼠的MCF-7异种移植物中均诱导了明显的表观遗传转变。 miR-200和let-7家族成员响应OSM刺激的表达以信号转导子和转录因子3(Stat3)依赖性激活剂下调,导致这些microRNA靶向的转录因子和癌蛋白的全面改变。抑制Stat3激活或let-7和miR-200的异位表达可有效逆转乳腺癌细胞的间质表型。 Stat3通过直接结合 Lin-28启动子来促进 Lin-28的转录,从而导致let-7表达的抑制和let-7靶标高迁移率的A组蛋白2的上调。 (HMGA2)。淘汰HMGA2会严重损害OSM驱动的EMT。我们的数据表明,let-7和miR-200水平的下调会启动并维持OSM诱导的EMT表型,而HMGA2则充当OSM诱导的EMT的主要开关。这些发现强调了Stat3配位的Lin-28B'etet-7'MGA2和miR-200'EB1电路在乳腺癌细胞因子介导的表型重编程中的重要性。

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