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微小RNA-212通过下调分化相关基因表达在少突胶质细胞成熟过程中发挥抑制作用。

MicroRNA-212 inhibits oligodendrocytes during maturation by down-regulation of differentiation-associated gene expression.

作者信息

Wang Chih-Yen, Deneen Benjamin, Tzeng Shun-Fen

机构信息

Department of Life Sciences, College of Bioscience and Biotechnology, National Cheng Kung University, Tainan, Taiwan.

Center for Cell and Gene Therapy, Baylor College of Medicine, Houston, Texas, USA.

出版信息

J Neurochem. 2017 Oct;143(1):112-125. doi: 10.1111/jnc.14138. Epub 2017 Sep 14.

Abstract

MicroRNA-212 (mir-212) has been reported to regulate neuronal development and functioning. However, its expression and function in glia are not yet known. Here, we demonstrate that the level of microRNA-212 (mir-212) was reduced in spinal cord lesion site at 1 week and 1 month after a contusive spinal cord injury. In addition to its expression in neurons, mir-212 expression was detected in oligodendrocytes (OLGs) and glial progenitor cells (GPCs) in adult CNS. The addition of antagomir-212 to reduce mir-212 expression enabled to improve the cell process outgrowth of OLGs along with the up-regulation of the genes associated with OLG differentiation and maturation, including OLIG1, SOX10, myelin basic protein (MBP), and proteolipid protein 1 (PLP1). In contrast, these genes were significantly down-regulated by an increased expression of mir-212 in GPCs or in OLG progenitor cells (OPCs) through lentivirus-mediated gene delivery approach. Moreover, we found that PLP1 was the direct target molecule of mir-212. Furthermore, mir-212 over-expression diminished the protein production of OLGs markers including 2',3'-cyclic-nucleotide 3'-phosphodiesterase (CNPase), MBP, and PLP. Additionally, mir-212 over-expression decreased the number of mature OLGs expressing MBP, and the expression of galactocerebroside (GC). Complementary studies in a hippocampal neuron-OLG co-culture model and an ex vivo cerebellar slice system indicated that OLGs derived from GPCs with mir-212 over-expression exhibited decreased ability to interact with neuronal axons. Collectively, our findings demonstrate that mir-212 repressed the expression of OLG maturation-associated proteins and inhibited OLG cell process extension, indicating that mir-212 has negative regulatory effect on OLG lineage progression.

摘要

据报道,微小RNA - 212(mir - 212)可调节神经元的发育和功能。然而,其在神经胶质细胞中的表达和功能尚不清楚。在此,我们证明在脊髓挫伤性损伤后1周和1个月时,脊髓损伤部位的微小RNA - 212(mir - 212)水平降低。除了在神经元中表达外,在成体中枢神经系统的少突胶质细胞(OLGs)和神经胶质祖细胞(GPCs)中也检测到了mir - 212的表达。添加抗miR - 212以降低mir - 212表达能够改善OLGs的细胞突起生长,并上调与OLG分化和成熟相关的基因,包括少突胶质细胞转录因子1(OLIG1)、性别决定区Y框蛋白10(SOX10)、髓鞘碱性蛋白(MBP)和蛋白脂蛋白1(PLP1)。相反,通过慢病毒介导的基因递送方法,在GPCs或少突胶质前体细胞(OPCs)中mir - 212表达增加会使这些基因显著下调。此外,我们发现PLP1是mir - 212的直接靶分子。此外,mir - 212过表达减少了包括2',3'-环核苷酸3'-磷酸二酯酶(CNPase)、MBP和PLP在内的OLGs标志物的蛋白产生。另外,mir - 212过表达减少了表达MBP的成熟OLGs数量以及半乳糖脑苷脂(GC)的表达。在海马神经元 - OLG共培养模型和离体小脑切片系统中的补充研究表明,源自mir - 212过表达的GPCs的OLGs与神经元轴突相互作用的能力降低。总体而言,我们的研究结果表明mir - 212抑制了OLG成熟相关蛋白的表达并抑制了OLG细胞突起延伸,表明mir - 212对OLG谱系进展具有负调控作用。

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