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首页> 外文期刊>Nucleic Acids Research >Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells
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Epigenetic control of a VDR-governed feed-forward loop that regulates p21((waf1/cip1)) expression and function in non-malignant prostate cells

机译:VDR控制的前馈环的表观遗传控制,该环调控非恶性前列腺细胞中p21((waf1 / cip1))的表达和功能

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In non-malignant RWPE-1 prostate epithelial cells signaling by the nuclear receptor Vitamin D Receptor (VDR, NR1I1) induces cell cycle arrest through targets including CDKN1A (encodes p21((waf1/cip1))). VDR dynamically induced individual histone modification patterns at three VDR binding sites (R1, 2, 3) on the CDKN1A promoter. The magnitude of these modifications was specific to each phase of the cell cycle. For example, H3K9ac enrichment occurred rapidly only at R2, whereas parallel accumulation of H3K27me3 occurred at R1; these events were significantly enriched in G(1) and S phase cells, respectively. The epigenetic events appeared to allow VDR actions to combine with p53 to enhance p21((waf1/cip1)) activation further. In parallel, VDR binding to the MCM7 gene induced H3K9ac enrichment associated with rapid mRNA up-regulation to generate miR-106b and consequently regulate p21((waf1/cip1)) expression. We conclude that VDR binding site-and promoter-specific patterns of histone modifications combine with miRNA co-regulation to form a VDR-regulated feed-forward loop to control p21((waf1/cip1)) expression and cell cycle arrest. Dissection of this feed-forward loop in a non-malignant prostate cell system illuminates mechanisms of sensitivity and therefore possible resistance in prostate and other VDR responsive cancers.
机译:在非恶性RWPE-1前列腺上皮细胞中,核受体维生素D受体(VDR,NR1I1)发出的信号通过包括CDKN1A在内的靶标诱导细胞周期停滞(编码p21((waf1 / cip1)))。 VDR在CDKN1A启动子上的三个VDR结合位点(R1、2、3)动态诱导单个组蛋白修饰模式。这些修饰的幅度是特定于细胞周期的每个阶段的。例如,H3K9ac富集仅在R2处迅速发生,而H3K27me3的平行积累在R1处发生。这些事件分别在G(1)和S期细胞中显着丰富。表观遗传事件似乎允许VDR动作与p53结合以进一步增强p21((waf1 / cip1))激活。同时,结合MCM7基因的VDR诱导H3K9ac富集,与快速上调mRNA产生mir-106b,从而调节p21((waf1 / cip1))表达。我们得出结论,组蛋白修饰的VDR结合位点和启动子特异性模式与miRNA共同调节结合,形成VDR调节的前馈环,以控制p21((waf1 / cip1))表达和细胞周期停滞。在非恶性前列腺细胞系统中对该前馈回路的解剖阐明了敏感性机制,因此阐明了前列腺癌和其他对VDR敏感的癌症的可能耐药性。

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