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首页> 外文期刊>Cellular Physiology and Biochemistry >The Role of MiR-132 in Regulating Neural Stem Cell Proliferation, Differentiation and Neuronal Maturation
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The Role of MiR-132 in Regulating Neural Stem Cell Proliferation, Differentiation and Neuronal Maturation

机译:MiR-132在调节神经干细胞增殖,分化和神经元成熟中的作用

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Background/Aims microRNAs are of vital importance in neural development. As a brain-specific miRNA, miR-132 has been well studied in mature neurons. However, its role in neural stem cells (NSCs) remains unclear. In this study, we investigated the role of miR-132 in regulating NSCs proliferation, differentiation and neuronal maturation. Methods NSCs were obtained from fetal mice spinal cord. Proliferation, cell cycle, cell apoptosis, cell motility were measured through CCK-8, BrdU, AnnexinV-FITC/PI and migration assay respectively. The expression of synaptic proteins and ERK1/2 pathway were detected by western blot. The inactivation of Notch pathway was checked using qPCR. The neurite outgrowth was recorded using Image J software and Neuron J software. Dendritic length was further analyzed through sholl analysis. Fate determination of NSCs, developmental synapse formation was assessed by immunostaining. Results miR-132 negatively regulated NSCs proliferation by affecting the cell cycle and promoting apoptosis. Inactivated Notch-Hes1pathway was observed in miR-132 overexpression cells. miR-132 was significantly increased in differentiating NSCs following activation of ERK1/2 pathway. miR-132 could impair neuronal differentiation but promote glial cell differentiation by regulating Mecp2 expression. miR-132 was implicated in neurite outgrowth but slightly inhibited postsynaptic PSD-95 expression. The differentiated neurons exhibited normal electrophysiological characteristics, and already interacted with other neurons to form synaptic-like structures. Conclusion miR-132 was demonstrated as a negative regulator for NSCs self-renewal, neuronal differentiation but promoted glial cell differentiation and neurite outgrowth.
机译:背景/目的microRNA在神经发育中至关重要。作为大脑特异性的miRNA,miR-132已在成熟的神经元中进行了深入研究。但是,其在神经干细胞(NSC)中的作用仍不清楚。在这项研究中,我们调查了miR-132在调节NSC增殖,分化和神经元成熟中的作用。方法从胚胎小鼠脊髓获得神经干细胞。分别通过CCK-8,BrdU,AnnexinV-FITC / PI和迁移测定法检测增殖,细胞周期,细胞凋亡,细胞运动性。 Western blot检测突触蛋白的表达和ERK1 / 2途径。使用qPCR检查Notch途径的失活。使用Image J软件和Neuron J软件记录神经突生长。通过肖尔分析进一步分析树突长度。 NSC的命运确定,通过免疫染色评估发育突触的形成。结果miR-132通过影响细胞周期并促进细胞凋亡来负调节NSC的增殖。在miR-132过表达细胞中观察到灭活的Notch-Hes1通路。在激活ERK1 / 2途径后,分化的NSC中miR-132显着增加。 miR-132可能通过调节Mecp2表达而损害神经元分化,但促进神经胶质细胞分化。 miR-132与神经突增生有关,但略微抑制突触后PSD-95表达。分化的神经元表现出正常的电生理特性,并且已经与其他神经元相互作用形成突触样结构。结论miR-132被证明是NSCs自我更新,神经元分化的负调节剂,但可促进神经胶质细胞的分化和神经突的生长。

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