Microarray expression profiling in the denervated hippocampus identifies long noncoding RNAs functionally involved in neurogenesis

IF 2.946 Q3 Biochemistry, Genetics and Molecular Biology BMC Molecular Biology Pub Date : 2017-06-06 DOI:10.1186/s12867-017-0091-2
Bingying Deng, Xiang Cheng, Haoming Li, Jianbing Qin, Meiling Tian, Guohua Jin
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引用次数: 18

Abstract

The denervated hippocampus provides a proper microenvironment for the survival and neuronal differentiation of neural progenitors. While thousands of lncRNAs were identified, only a few lncRNAs that regulate neurogenesis in the hippocampus are reported. The present study aimed to perform microarray expression profiling to identify long noncoding RNAs (lncRNAs) that might participate in the hippocampal neurogenesis, and investigate the potential roles of identified lncRNAs in the hippocampal neurogenesis.

In this study, the profiling suggested that 74 activated and 29 repressed (|log fold-change|>1.5) lncRNAs were differentially expressed between the denervated and the normal hippocampi. Furthermore, differentially expressed lncRNAs associated with neurogenesis were found. According to the tissue-specific expression profiles, and a novel lncRNA (lncRNA2393) was identified as a neural regulator in the hippocampus in this study. The expression of lncRNA2393 was activated in the denervated hippocampus. FISH showed lncRNA2393 specially existed in the subgranular zone of the dentate gyrus in the hippocampus and in the cytoplasm of neural stem cells (NSCs). The knockdown of lncRNA2393 depletes the EdU-positive NSCs. Besides, the increased expression of lncRNA2393 was found to be triggered by the change in the microenvironment.

We concluded that expression changes of lncRNAs exists in the microenvironment of denervated hippocampus, of which promotes hippocampal neurogenesis. The identified lncRNA lncRNA2393 expressed in neural stem cells, located in the subgranular zone of the dentate gyrus, which can promote NSCs proliferation in vitro. Therefore, the question is exactly which part of the denervated hippocampus induced the expression of lncRNA2393. Further studies should aim to explore the exact molecular mechanism behind the expression of lncRNA2393 in the hippocampus, to lay the foundation for the clinical application of NSCs in treating diseases of the central nervous system.

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失神经海马中的微阵列表达谱鉴定了参与神经发生功能的长链非编码rna
失神经海马为神经祖细胞的存活和神经元分化提供了良好的微环境。虽然鉴定了数千种lncrna,但仅报道了几种调节海马神经发生的lncrna。本研究旨在通过微阵列表达谱鉴定可能参与海马神经发生的长链非编码rna (long noncoding RNAs, lncRNAs),并探讨鉴定出的lncRNAs在海马神经发生中的潜在作用。在这项研究中,分析表明74个激活的lncrna和29个抑制的lncrna在失神经海马和正常海马之间存在差异表达。此外,还发现了与神经发生相关的差异表达lncrna。根据组织特异性表达谱,本研究确定了一种新的lncRNA (lncRNA2393)是海马中的神经调节因子。lncRNA2393在失神经海马中被激活表达。FISH显示lncRNA2393特异性存在于海马齿状回亚颗粒区和神经干细胞(NSCs)的细胞质中。lncRNA2393基因的敲低会耗尽edu阳性的NSCs。此外,我们发现lncRNA2393的表达增加是由微环境的变化引发的。我们认为lncrna的表达改变存在于失神经海马的微环境中,促进了海马神经的发生。鉴定到的lncRNA lncRNA2393在神经干细胞中表达,位于齿状回亚颗粒区,能促进NSCs体外增殖。因此,问题是到底是失神经海马的哪一部分诱导了lncRNA2393的表达。进一步研究lncRNA2393在海马中表达的确切分子机制,为临床应用NSCs治疗中枢神经系统疾病奠定基础。
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来源期刊
BMC Molecular Biology
BMC Molecular Biology 生物-生化与分子生物学
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Molecular Biology is an open access journal publishing original peer-reviewed research articles in all aspects of DNA and RNA in a cellular context, encompassing investigations of chromatin, replication, recombination, mutation, repair, transcription, translation and RNA processing and function.
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