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Growth differentiation factor-15 encodes a novel microRNA 3189 that functions as a potent regulator of cell death

机译:生长分化因子15编码新型microRNA 3189,可作为细胞死亡的有效调节剂

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According to the latest version of miRBase, approximately 30% of microRNAs (miRNAs) are unique to primates, but the physiological function of the vast majority remains unknown. In this study, we identified miR-3189 as a novel, p53-regulated, primate-specific miRNA embedded in the intron of the p53-target gene GDF15. Antagonizing miR-3189 increased proliferation and sensitized cells to DNA damage-induced apoptosis, suggesting a tumor suppressor function for endogenous miR-3189. Identification of genome-wide miR-3189 targets revealed that miR-3189 directly inhibits the expression of a large number of genes involved in cell cycle control and cell survival. In addition, miR-3189 downregulated the expression of multiple p53 inhibitors resulting in elevated p53 levels and upregulation of several p53 targets including p21 (CDKN1A), GADD45A and the miR-3189 host gene GDF15, suggesting miR-3189 auto-regulation. Surprisingly, miR-3189 overexpression in p53(-/-) cells upregulated a subset of p53-targets including GDF15, GADD45A, and NOXA, but not CDKN1A. Consistent with these results, overexpression of miR-3189 potently induced apoptosis and inhibited tumorigenicity in vivo in a p53-independent manner. Collectively, our study identified miR-3189 as a novel, primate-specific miRNA whose effects are mediated by both p53-dependent and p53-independent mechanisms. miR-3189 may, therefore, represent a novel tool that can be utilized therapeutically to induce a potent proapoptotic effect even in p53-deficient tumors.
机译:根据最新版本的miRBase,大约30%的microRNA(miRNA)是灵长类独有的,但是绝大多数的生理功能仍然未知。在这项研究中,我们确定了miR-3189是一种嵌入p53靶基因GDF15内含子中的新型,p53调控,灵长类特异性miRNA。拮抗miR-3189可以增加增殖,并使细胞对DNA损伤诱导的细胞凋亡敏感,这表明内源性miR-3189具有抑癌功能。全基因组miR-3189靶标的鉴定表明,miR-3189直接抑制了许多参与细胞周期控制和细胞存活的基因的表达。此外,miR-3189下调了多种p53抑制剂的表达,导致p53含量升高,并且上调了多个p53靶标,包括p21(CDKN1A),GADD45A和miR-3189宿主基因GDF15,这表明miR-3189可以自动调节。令人惊讶的是,miR-3189在p53(-/-)细胞中的过度表达上调了p53靶标的一个子集,包括GDF15,GADD45A和NOXA,但不包括CDKN1A。与这些结果一致,miR-3189的过度表达在体内以p53独立的方式有效诱导了细胞凋亡并抑制了致瘤性。总的来说,我们的研究将miR-3189鉴定为一种新颖的,灵长类特异性miRNA,其作用是由p53依赖性和p53依赖性机制介导的。因此,miR-3189可能代表了一种新型工具,即使在p53缺陷的肿瘤中,也可用于治疗性诱导有效的促凋亡作用。

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