首页> 美国卫生研究院文献>American Journal of Translational Research >BMP2 promotes the differentiation of neural stem cells into dopaminergic neurons in vitro via miR-145-mediated upregulation of Nurr1 expression
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BMP2 promotes the differentiation of neural stem cells into dopaminergic neurons in vitro via miR-145-mediated upregulation of Nurr1 expression

机译:BMP2通过miR-145介导的Nurr1表达上调促进神经干细胞向多巴胺能神经元的分化

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摘要

Background: Neural stem cells (NSCs) are pluripotent and self-renewing cells which could differentiate into diverse types of neural cells, such as dopaminergic (DA) neurons, the loss of which is the typical characteristic of Parkinson’s disease (PD). This study aimed to examine the molecular mechanisms of BMP2-mediating NSCs differentiation into DA neurons. Methods: Different concentrations of BMP2 were used to induce the differentiation of NSCs into DA neurons, which were characterized by the number and the neurite lengths of tyrosine hydroxylase (TH)+ and dopamine transporter (DAT)+ neurons by immunocytochemistry. qRT-PCR and Western blot were performed to explore the expression of miR-145 and Nurr1. The methylation level of miR-145 promoter was examined by DNA methylation analyses. The regulation of miR-145 on Nurr1 was detected by Dual-Luciferase reporter assay. Results: The number of TH+ and DAT+ neurons were significantly increased in NSCs treated with 20 and 100 ng/ml of BMP2, as well as the neurite lengths of TH+ and DAT+ neurons. The reduced level of miR-145 and up-regulated Nurr1 were observed in NSCs induced by BMP2. The hypermethylation level of miR-145 promoter down-regulated the expression of miR-145 in NSCs pretreated with BMP2, which was regulated by DNMT3b. Luciferase reporter assay showed that Nurr1 was a direct target of miR-145. miR-145 overexpression restrained the differentiating effect of BMP2. Moreover, overexpression of Nurr1 abrogated this effect of miR-145 overexpression. Conclusion: Our results showed that BMP2 promoted the differentiation of NSCs into DA neurons in vitro and miR-145 and Nurr1 were involved in the neurotrophic effects of BMP2.
机译:背景:神经干细胞(NSC)是多能的自我更新细胞,可以分化为多种神经细胞,例如多巴胺能(DA)神经元,帕金森氏病(PD)的典型特征是神经元细胞的丢失。这项研究旨在检查介导BMP2的NSC分化为DA神经元的分子机制。方法:采用不同浓度的BMP2诱导NSCs向DA神经元的分化,并通过免疫细胞化学分析酪氨酸羟化酶(TH)+和多巴胺转运蛋白(DAT)+神经元的数量和神经突长度。进行了qRT-PCR和Western blot研究了miR-145和Nurr1的表达。通过DNA甲基化分析检查了miR-145启动子的甲基化水平。通过双重荧光素酶报告基因分析检测到miR-145对Nurr1的调控。结果:在用20和100 ng / ml BMP2处理的NSC中,TH +和DAT +神经元的数量以及TH +和DAT +神经元的神经突长度显着增加。在BMP2诱导的NSC中观察到miR-145的水平降低和Nurr1上调。 miR-145启动子的高甲基化水平下调了BMP2预处理的NSC中miR-145的表达,而DNMT3b则调节了该表达。萤光素酶报告基因检测表明Nurr1是miR-145的直接靶标。 miR-145过表达抑制了BMP2的分化作用。此外,Nurr1的过表达消除了miR-145过表达的这种作用。结论:我们的结果表明BMP2促进了NSCs向DA神经元的分化,miR-145和Nurr1参与了BMP2的神经营养作用。

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