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Mybl2 downregulated during colon epithelial cell maturation is suppressed by miR-365

机译:在结肠上皮细胞成熟过程中下调的Mybl2被miR-365抑制

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摘要

Altered profiles of gene expression reflect the reprogramming of intestinal epithelial cells during their maturation along the crypt-luminal axis. To focus on genes important in this process, and how they in turn are regulated, we identified 14 transcripts commonly downregulated in expression during lineage-specific maturation of the immortalized cell lines Caco-2 (absorptive), HT29Cl16E (goblet), and HT29Cl19A (secretory) induced by contact inhibition of growth or the short-chain fatty acid butyrate. One such gene, Mybl2 (Myb-related protein B), has been linked to the stem cell phenotype, and we report is also markedly suppressed in maturing cells along the crypt-luminal axis in vivo. Mybl2 is not significantly downregulated transcriptionally during colon cell maturation, but we identified a potential micro-RNA (miRNA)-binding sequence in the Mybl2 3′-untranslated region that mediates reporter gene suppression in differentiating colon cells. Accordingly, miRNAs predicted to bind this functional target are upregulated in differentiating colon epithelial cells in vitro and in vivo; expression of one of these, hsa-miR-365 (but not hsa-324–5p), suppresses Mybl2 protein expression in proliferating Caco-2 cells. These data demonstrate that miRNA silencing plays an important role in regulating gene expression in maturing colon epithelial cells, and that utilizing a target-centered approach, rather than profiling global miRNA expression, can identify physiologically relevant, functional miRNAs.
机译:基因表达谱的改变反映了小肠上皮细胞沿隐窝腔轴成熟期间的重编程。为了专注于在此过程中重要的基因及其调控方式,我们鉴定了永生化细胞系Caco-2(吸收性),HT29Cl16E(杯状)和HT29Cl19A(在谱系特异性成熟过程中表达通常下调的14个转录本分泌)的接触抑制生长或短链脂肪酸丁酸酯的诱导。一种这样的基因,Mybl2(与Myb相关的蛋白B),已经与干细胞表型相关联,而且我们报道在沿隐窝腔轴的体内成熟细胞中也被显着抑制。 Mybl2并没有在结肠细胞成熟过程中显着下调转录,但我们在Mybl2 3'非翻译区中鉴定了一个潜在的微RNA(miRNA)结合序列,该序列介导分化结肠细胞中的报告基因抑制。因此,在体外和体内分化结肠上皮细胞中,预测结合该功能靶标的miRNA上调;其中一种hsa-miR-365(而非hsa-324-5p)的表达抑制了增殖的Caco-2细胞中Mybl2蛋白的表达。这些数据表明,miRNA沉默在调节成熟的结肠上皮细胞中的基因表达中起着重要作用,并且利用以靶点为中心的方法而不是分析总体miRNA的表达,可以鉴定生理相关的功能性miRNA。

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