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Cis-regulation of microRNA expression by scaffold/matrix-attachment regions

机译:支架/基质附着区对microRNA表达的顺式调节

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microRNAs (miRNAs) spatio-temporally modulate gene expression; however, very little is known about the regulation of their expression. Here, we hypothesized that the well-known cis-regulatory elements of gene expression, scaffold/matrix-attachment regions (MARs) could modulate miRNA expression. Accordingly, we found MARs to be enriched in the upstream regions of miRNA genes. To determine their role in cell type-specific expression of miRNAs, we examined four individual miRNAs (let-7b, miR-17, miR-93 and miR-221) and the miR-17-92 cluster, known to be overexpressed in neuroblastoma. Our results show that MARs indeed define the cell-specific expression of these miRNAs by tethering the chromatin to nuclear matrix. This is brought about by cell type-specific binding of HMG I/Y protein to MARs that then promotes the local acetylation of histones, serving as boundary elements for gene activation. The binding, chromatin tethering and gene activation by HMG I/Y was not observed in fibroblast control cells but were restricted to neuroblastoma cells. This study implies that the association of MAR binding proteins to MARs could dictate the tissue/context specific regulation of miRNA genes by serving as a boundary element signaling the transcriptional activation.
机译:microRNA(miRNA)时空调节基因表达;然而,对其表达的调控知之甚少。在这里,我们假设基因表达的众所周知的顺式调控元件,支架/基质附着区(MARs)可以调节miRNA的表达。因此,我们发现MARs在miRNA基因的上游区域富集。为了确定它们在miRNA的细胞类型特异性表达中的作用,我们检查了四个单独的miRNA(let-7b,miR-17,miR-93和miR-221)和已知在神经母细胞瘤中过表达的miR-17-92簇。 。我们的结果表明,MARs通过将染色质束缚在核基质上,确实定义了这些miRNA的细胞特异性表达。这是由于HMG I / Y蛋白与MARs的细胞类型特异性结合而引起的,然后MARS促进了组蛋白的局部乙酰化,从而充当了基因激活的边界元素。在成纤维细胞对照细胞中未观察到HMG I / Y的结合,染色质束缚和基因激活,但仅限于神经母细胞瘤细胞。这项研究表明,MAR结合蛋白与MARs的关联可能通过充当信号转导转录的边界元件,决定了miRNA基因的组织/背景特异性调控。

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