Department of Psychiatry and Behavioral Neurobiology, University of Alabama at Birmingham, Birmingham, Alabama, 35294, USA.
Human Brain Tissue Bank and Laboratory, Semmelweis University, Budapest, H-1094, Hungary.
Sci Rep. 2017 Jun 29;7(1):4387. doi: 10.1038/s41598-017-04300-9.
Norepinephrine (NE) is produced primarily by neurons in the locus coeruleus (LC). Retrograde and ultrastructural examinations reveal that the core of the LC and its surrounding region receives afferent projections from several brain areas which provide multiple neurochemical inputs to the LC with changes in LC neuronal firing, making it a highly coordinated event. Although NE and mediated signaling systems have been studied in relation to suicide and psychiatric disorders that increase the risk of suicide including depression, less is known about the corresponding changes in molecular network within LC. In this study, we examined miRNA networks in the LC of depressed suicide completers and healthy controls. Expression array revealed differential regulation of 13 miRNAs. Interaction between altered miRNAs and target genes showed dense interconnected molecular network. Functional clustering of predicated target genes yielded stress induced disorders that collectively showed the complex nature of suicidal behavior. In addition, 25 miRNAs were pairwise correlated specifically in the depressed suicide group, but not in the control group. Altogether, our study revealed for the first time the involvement of LC based dysregulated miRNA network in disrupting cellular pathways associated with suicidal behavior.
去甲肾上腺素(NE)主要由蓝斑核(LC)中的神经元产生。逆行和超微结构检查显示,LC 的核心及其周围区域接收来自几个脑区的传入投射,这些投射通过 LC 神经元放电的变化向 LC 提供多种神经化学输入,使其成为一个高度协调的事件。尽管已经研究了与增加自杀风险的自杀和精神障碍有关的 NE 和介导的信号转导系统,包括抑郁症,但关于 LC 内相应的分子网络变化知之甚少。在这项研究中,我们检查了抑郁自杀完成者和健康对照者 LC 中的 miRNA 网络。表达谱显示 13 个 miRNA 的差异调节。改变的 miRNA 和靶基因之间的相互作用显示出密集的相互连接的分子网络。预测靶基因的功能聚类产生应激诱导的疾病,这些疾病共同显示出自杀行为的复杂性。此外,25 个 miRNA 仅在抑郁自杀组中呈成对相关,但在对照组中则没有。总的来说,我们的研究首次揭示了 LC 中基于失调 miRNA 网络的参与破坏与自杀行为相关的细胞途径。