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首页> 外文期刊>Neuroreport >The role of miR-122-5p in negatively regulating T-box brain 1 expression on the differentiation of mouse bone mesenchymal stem cells
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The role of miR-122-5p in negatively regulating T-box brain 1 expression on the differentiation of mouse bone mesenchymal stem cells

机译:miR-122-5p在对小鼠骨髓间充质干细胞分化的抗衡性T字粒脑1表达中的作用

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To achieve neuronal differentiation of mouse bone mesenchymal stem cells (bMSCs) into neuron-like cells and explore the role of miR-122-5p that may regulate T-box brain 1 (Tbr1) expression during the induction. BMSCs were cultured and induced with butylated hydroxyanisole, retinoic acid (RA), basic fibroblast growth factor, and nerve growth factor in vitro. The cells were stained for neuron-specific enolase (NSE) and beta-III-tubulin by immunocytochemistry/ immunofluorescence. MiR-122-5p that may regulate Tbr1 expression was predicted by bioinformatics and identified using a Dual-Luciferase assay. The expressions of miR-122-5p and Tbr1 were determined by real-time PCR and western blot before and after the induction. After infection of miR-122-5p, the expressions of Tbr1, NSE, and tauons were measured. BMSCs showed a short spindle shape with a uniform distribution. After 14 days, the induced cells showed neuronal traits with a pyramidal appearance. TargetScan and miRanda showed that miR-122-5p was well complementary with the target site of the Tbr1 3'-untranslated region. Identified by the Dual-Luciferase assay, we found that miR-122-5p could inhibit Tbr1 expression by binding to its 3'-untranslated region. Furthermore, the expressions of Tbr1 mRNA and protein were decreased by real-time PCR and western blot. Overexpression of miR-122-5p downregulated the expressions of Tbr1, NSE, and tauons. MiR-122-5p may negatively regulate Tbr1 expression to affect the differentiation of bMSCs into neuron-like cells. Copyright (C) 2017 The Author(s). Published by Wolters Kluwer Health, Inc.
机译:为了实现小鼠骨间充质干细胞(BMSCs)的神经元分化为神经元样细胞并探讨miR-122-5p的作用,其在诱导过程中可能调节T型盒脑1(TBR1)表达。培养BMSCs并用丁基羟基烷,视黄酸(RA),碱性成纤维细胞生长因子和神经生长因子培养并诱导。通过免疫细胞化学/免疫荧光染色细胞用于神经元特异性烯醇酶(NSE)和β-III-微管蛋白。通过生物信息学预测可以调节TBR1表达的miR-122-5p,并使用双荧光素酶测定鉴定。 MiR-122-5P和TBR1的表达是通过在诱导前后的实时PCR和Western印迹确定的。在感染miR-122-5p后,测量TBR1,NSE和矿床的表达。 BMSCS显示出具有均匀分布的短主轴形状。 14天后,诱导细胞显示出具有金字塔形外观的神经元性状。 TargetScan和Miranda表明,MiR-122-5P与TBR1 3'-Wonsranslated地区的目标部位很好。通过双荧光素酶测定鉴定,我们发现MiR-122-5P可以通过与其3-未转化的区域结合来抑制TBR1表达。此外,通过实时PCR和Western印迹降低TBR1 mRNA和蛋白的表达。 miR-122-5p的过度表达下调了TBR1,NSE和Tauons的表达。 miR-122-5p可能会产生负调节tbr1表达以影响BMSC的分化为神经元样细胞。版权所有(c)2017提交人。由Wolters Kluwer Health,Inc。出版

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