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Mutant Runx2 regulates amelogenesis and osteogenesis through a miR-185-5p-Dlx2 axis

机译:突变Runx2通过miR-185-5p-Dlx2轴调控牙釉质形成和成骨

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Regulation of microRNAs (miRNA) has been extensively investigated in diseases; however, little is known about the roles of miRNAs in cleidocranial dysplasia (CCD). The aim of the present study was to investigate the potential involvement of miRNAs in CCD. In vitro site-directed mutagenesis was performed to construct three mutant Runx2 expression vectors, which were then transfected into LS8 cells and MC3T3-E1 cells, to determine the impact on amelogenesis and osteogenesis, respectively. miRCURY LNA miRNA microarray identify miR-185-5p as a miRNA target commonly induced by all three Runx2 mutants. Real-time quantitative PCR was applied to determine the expression of miR-185-5p and Dlx2 in samples. Dual-luciferase reporter assays were conducted to confirm Dlx2 as a legitimate target of miR-185-5p. The suppressive effect of miR-185-5p on amelogenesis and osteogenesis of miR-185-5p was evaluated by RT-PCR and western blot examination of Amelx, Enam, Klk4, and Mmp20 gene and protein expression, and by Alizarin Red stain. We found that mutant Runx2 suppressed amelogenesis and osteogenesis. miR-185-5p, induced by Runx2, suppressed amelogenesis and osteogenesis. Furthermore, we identified Dlx2 as direct target of miR-185-5p. Consistently, Dlx2 expression was inversely correlated with miR-185-5p levels. This study highlights the molecular etiology and significance of miR-185-5p in CCD, and suggests that targeting miR-185-5p may represent a new therapeutic strategy in prevention or intervention of CCD.
机译:在疾病中已广泛研究了microRNA(miRNA)的调控;然而,关于miRNA在颅骨发育不良(CCD)中的作用知之甚少。本研究的目的是研究miRNA在CCD中的潜在参与。进行了体外定点诱变以构建三个突变的Runx2表达载体,然后将其转染到LS8细胞和MC3T3-E1细胞中,分别确定其对牙釉质形成和成骨的影响。 miRCURY LNA miRNA芯片将miR-185-5p确定为通常由所有三个Runx2突变体诱导的miRNA靶标。应用实时定量PCR确定样品中miR-185-5p和Dlx2的表达。进行双荧光素酶报告基因测定,以确认Dlx2是miR-185-5p的合法靶标。通过RT-PCR和Amelx,Enam,Klk4和Mmp20基因和蛋白质表达的蛋白质印迹检测以及茜素红染色,评估了miR-185-5p对miR-185-5p牙釉质形成和成骨的抑制作用。我们发现突变体Runx2抑制牙釉质生成和成骨。由Runx2诱导的miR-185-5p抑制了釉突形成和成骨。此外,我们确定Dlx2为miR-185-5p的直接靶标。一致地,D1x2表达与miR-185-5p水平成反比。这项研究强调了CCD中miR-185-5p的分子病因学和意义,并建议靶向miR-185-5p可能代表预防或干预CCD的新治疗策略。

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