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DGCR8 介导的 miRNA 生物发生破坏诱导原代成纤维细胞发生细胞衰老。

DGCR8-mediated disruption of miRNA biogenesis induces cellular senescence in primary fibroblasts.

机构信息

Instituto de Investigaciones Biomédicas 'Alberto Sols' CSIC-UAM, Madrid, Spain.

出版信息

Aging Cell. 2013 Oct;12(5):923-31. doi: 10.1111/acel.12117. Epub 2013 Jul 19.

Abstract

The regulation of gene expression by microRNAs (miRNAs) is critical for normal development and physiology. Conversely, miRNA function is frequently impaired in cancer, and other pathologies, either by aberrant expression of individual miRNAs or dysregulation of miRNA synthesis. Here, we have investigated the impact of global disruption of miRNA biogenesis in primary fibroblasts of human or murine origin, through the knockdown of DGCR8, an essential mediator of the synthesis of canonical miRNAs. We find that the inactivation of DGCR8 in these cells results in a dramatic antiproliferative response, with the acquisition of a senescent phenotype. Senescence triggered by DGCR8 loss is accompanied by the upregulation of the cell-cycle inhibitor p21CIP1. We further show that a subset of senescence-associated miRNAs with the potential to target p21CIP1 is downregulated during DGCR8-mediated senescence. Interestingly, the antiproliferative response to miRNA biogenesis disruption is retained in human tumor cells, irrespective of p53 status. In summary, our results show that defective synthesis of canonical microRNAs results in cell-cycle arrest and cellular senescence in primary fibroblasts mediated by specific miRNAs, and thus identify global miRNA disruption as a novel senescence trigger.

摘要

miRNAs(微小 RNA)对基因表达的调控对于正常发育和生理功能至关重要。相反,miRNA 的功能在癌症和其他病理情况下经常受到损害,这可能是由于单个 miRNA 的异常表达或 miRNA 合成的失调所致。在这里,我们通过敲低 DGCR8(一种经典 miRNA 合成的必需介质),研究了人源或鼠源原代成纤维细胞中 miRNA 生物发生的全局破坏对其产生的影响。我们发现,这些细胞中 DGCR8 的失活会导致明显的抗增殖反应,并获得衰老表型。DGCR8 缺失引发的衰老伴随着细胞周期抑制剂 p21CIP1 的上调。我们进一步表明,在 DGCR8 介导的衰老过程中,一组具有靶向 p21CIP1 潜力的衰老相关 miRNA 下调。有趣的是,miRNA 生物发生破坏的抗增殖反应在人类肿瘤细胞中得以保留,而与 p53 状态无关。总之,我们的研究结果表明,经典 miRNA 的合成缺陷会导致原代成纤维细胞中的细胞周期停滞和细胞衰老,这是由特定的 miRNA 介导的,因此,将全局 miRNA 破坏鉴定为一种新的衰老触发因素。

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