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FOXO1 regulates expression of a microRNA cluster on X chromosome

机译:FOXO1调节X染色体上microRNA簇的表达

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摘要

Phosphoinositol-3-kinase (PI3K) pathway is a crucial modulator of many physiological and pathophysiological phenomena, including aging, diabetes and cancer. Protein kinase Akt, a downstream effector of PI3K, controls a plethora of cellular functions, including gene transcription. A key mechanism connecting Akt activity to changes in gene expression is inhibitory phosphorylation of FOXO family of transcription factors. Accordingly, altered expression of FOXO targets may account for many biological consequences of PI3K/Akt signaling. While the previous efforts focused on FOXO-dependent regulation of protein-coding genes, non-coding RNA genes have emerged as equally important targets of many transcription factors. Therefore, we utilized a regulated form of FOXO1 to profile FOXO1-dependent changes in miRNA expression in human cells. Both microarray hybridization and next-generation sequencing revealed changes in the products of a miRNA cluster on X chromosome. Rapid induction of these miRNAs occurred independently of de novo protein synthesis. Furthermore, inhibition of PI3K in cancer cell lines caused derepression of these miRNAs, as would be expected for FOXO-regulated genes. Members of the major oncogenic cascades are significantly overrepresented among the predicted targets of the miRNAs, consistent with tumor-suppressive role of FOXO1. The discovered miRNAs represent new candidate mediators of FOXO1 functions and possible biomarkers of its activity.
机译:磷酸肌醇-3-激酶(PI3K)途径是许多生理和病理生理现象(包括衰老,糖尿病和癌症)的关键调节剂。蛋白激酶Akt是PI3K的下游效应子,控制着过多的细胞功能,包括基因转录。连接Akt活性与基因表达变化的关键机制是FOXO转录因子家族的抑制性磷酸化。因此,FOXO靶标表达的改变可解释PI3K / Akt信号传导的许多生物学后果。尽管先前的工作集中在对FOXO依赖的蛋白质编码基因的调控上,但非编码RNA基因已成为许多转录因子的同等重要靶标。因此,我们利用FOXO1的调节形式来分析人类细胞中miRNA表达中FOXO1依赖性的变化。芯片杂交和下一代测序都揭示了X染色体上miRNA簇的产物发生了变化。这些miRNA的快速诱导独立于从头蛋白质合成而发生。此外,对癌细胞系中PI3K的抑制导致了这些miRNA的抑制,这正是FOXO调控基因所期望的。在miRNA的预测靶标中,主要致癌级联的成员明显过多,与FOXO1的肿瘤抑制作用一致。发现的miRNA代表FOXO1功能的新候选介体和其活性的可能生物标记。

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