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A microRNA targeting dicer for metastasis control

机译:用于转移控制的microRNA靶向切块机

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Although specific microRNAs (miRNAs) can be upregulated in cancer, global miRNA downregulation is a common trait of human malignancies. The mechanisms of this phenomenon and the advantages it affords remain poorly understood. Here we identify a microRNA family, miR-103/107, that attenuates miRNA biosynthesis by targeting Dicer, a key component of the miRNA processing machinery. In human breast cancer, high levels of miR-103/107 are associated with metastasis and poor outcome. Functionally, miR-103/107 confer migratory capacities in vitro and empower metastatic dissemination of otherwise nonaggressive cells in vivo. Inhibition of miR-103/107 opposes migration and metastasis of malignant cells. At the cellular level, a key event fostered by miR-103/107 is induction of epithelial-to-mesenchymal transition (EMT), attained by downregulating miR-200 levels. These findings suggest a new pathway by which Dicer inhibition drifts epithelial cancer toward a less-differentiated, mesenchymal fate to foster metastasis.
机译:尽管特定的microRNA(miRNA)可以在癌症中上调,但总体miRNA下调是人类恶性肿瘤的共同特征。这种现象的机理及其带来的好处仍然知之甚少。在这里,我们确定了microRNA家族miR-103 / 107,该家族通过靶向Dicer(miRNA处理机器的关键组件)来减弱miRNA的生物合成。在人类乳腺癌中,高水平的miR-103 / 107与转移和不良预后相关。在功能上,miR-103 / 107可在体外赋予迁移能力,并能在体内使原本不刺激的细胞转移转移。 miR-103 / 107的抑制与恶性细胞的迁移和转移相反。在细胞水平上,由miR-103 / 107促进的关键事件是诱导上皮向间充质转变(EMT),这是通过下调miR-200水平来实现的。这些发现表明,切丁酶抑制作用通过新途径使上皮癌转移至分化程度较低的间充质命运,从而促进转移。

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