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Novel microRNA revealed by systematic analysis of the microRNA transcriptome in dentate gyrus granule cells

机译:通过在牙齿血管颗粒细胞中的MicroRNA转录组系统分析显示新的MicroRNA

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摘要

Post-transcriptional control of gene expression by microRNAs provides an important regulatory system within neurons, allowing co-ordinate and fine-tuned expression of plasticity-related proteins. Indeed, specific microRNAs have been shown to be regulated by synaptic activity in the dentate gyrus, and contribute to the regulated gene expression that underlies the persistence of long-term potentiation (LTP), a model of memory. To fully explore the contribution of microRNAs in synaptic plasticity, it is important to characterize the complete microRNA transcriptome in regions such as the dentate gyrus. Accordingly we used deep sequencing and miRDeep* analysis to search for novel microRNAs expressed in the dentate gyrus granule cell layer. Drawing on combined sequencing and bioinformatics analyses, including hairpin stability and patterns of precursor microRNA processing, we identified nine putative novel microRNAs. We did not find evidence of differential expression of any of these putative microRNAs following LTP at perforant path-granule cell synapses in awake rats (5 h post-tetanus; p >0.05). Focusing on novel_miR-1, the most abundant novel miRNA, we showed that this sequence could be amplified from RNA extracted from dentate gyrus granule cells by reverse transcription-quantitative polymerase chain reaction. Further, by computationally predicting mRNA targets of this microRNA, we found that this novel microRNA likely contributes to the regulation of proteins that function at synapses. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:MicroRNA的基因表达后的转录后控制在神经元中提供了一个重要的调节系统,允许统一和微调塑性相关蛋白的表达。实际上,已经证明了特异性微小RORNA通过牙齿回肠中的突触活性来调节,并有助于受调节的基因表达,使长期增强(LTP),记忆模型的持久性下放。为了充分探索微大罗氏在突触可塑性中的贡献,重要的是在诸如牙齿的区域中的完整microRNA转录组进行表征。因此,我们使用深度测序和MIDDEEP *分析,以寻找在牙齿过滤颗粒细胞层中表达的新微大罗氏。借鉴组合测序和生物信息学分析,包括发夹稳定性和前体微瘤加工模式,我们确定了九个推定的新型MicroRNA。在唤醒大鼠的穿孔路径 - 颗粒细胞突触(5小时后,我们没有发现LTP中任何这些推定的microRNA的差异表达的证据表达(5小时后; P> 0.05)。专注于新型新型新的miRNA,我们表明,通过逆转录定量聚合酶链反应,可以从牙齿回转颗粒细胞中提取的RNA扩增该序列。此外,通过计算该MicroRNA的mRNA靶标,我们发现该新型MicroRNA可能有助于调节在突触处起作用的蛋白质。 (c)2016 Elsevier Ireland Ltd.保留所有权利。

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