Soula Anaïs, Valere Mélissa, López-González María-José, Ury-Thiery Vicky, Groppi Alexis, Landry Marc, Nikolski Macha, Favereaux Alexandre
University of Bordeaux, Bordeaux, France.
Centre Nationale de la Recherche Scientifique (CNRS), Unité Mixte de Recherche 5297, Interdisciplinary Institute of Neuroscience, Bordeaux, France.
Life Sci Alliance. 2018 Sep 30;1(5):e201800018. doi: 10.26508/lsa.201800018. eCollection 2018 Oct.
In the central nervous system (CNS), miRNAs are involved in key functions, such as neurogenesis and synaptic plasticity. Moreover, they are essential to define specific transcriptomes in tissues and cells. However, few studies were performed to determine the miRNome of the different structures of the rat CNS, although a major model in neuroscience. Here, we determined by small RNA-Seq, the miRNome of the olfactory bulb, the hippocampus, the cortex, the striatum, and the spinal cord and showed the expression of 365 known miRNAs and 90 novel miRNAs. Differential expression analysis showed that several miRNAs were specifically enriched/depleted in these CNS structures. Transcriptome analysis by mRNA-Seq and correlation based on miRNA target predictions suggest that the specifically enriched/depleted miRNAs have a strong impact on the transcriptomic identity of the CNS structures. Altogether, these results suggest the critical role played by these enriched/depleted miRNAs, in particular the novel miRNAs, in the functional identities of CNS structures.
在中枢神经系统(CNS)中,微小RNA(miRNA)参与关键功能,如神经发生和突触可塑性。此外,它们对于定义组织和细胞中的特定转录组至关重要。然而,尽管大鼠中枢神经系统是神经科学中的主要模型,但很少有研究确定其不同结构的miRNA组。在这里,我们通过小RNA测序确定了嗅球、海马体、皮层、纹状体和脊髓的miRNA组,并展示了365种已知miRNA和90种新miRNA的表达。差异表达分析表明,几种miRNA在这些中枢神经系统结构中特异性富集/缺失。通过mRNA测序进行的转录组分析以及基于miRNA靶标预测的相关性分析表明,特异性富集/缺失的miRNA对中枢神经系统结构的转录组特征有强烈影响。总之,这些结果表明这些富集/缺失的miRNA,特别是新的miRNA,在中枢神经系统结构的功能特征中发挥着关键作用。