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首页> 外文期刊>Neuropsychiatric Disease and Treatment >Identification of key genes, pathways and miRNA/mRNA regulatory networks of CUMS-induced depression in nucleus accumbens by integrated bioinformatics analysis
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Identification of key genes, pathways and miRNA/mRNA regulatory networks of CUMS-induced depression in nucleus accumbens by integrated bioinformatics analysis

机译:通过集成生物信息学分析鉴定CUMS诱导伏伏核抑制的关键基因,途径和miRNA / mRNA调控网络

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Introduction: Major depressive disorder (MDD) is a recurrent, devastating mental disorder, which affects 350 million people worldwide, and exerts substantial public health and financial costs to society. Thus, there is a significant need to discover innovative therapeutics to treat depression efficiently. Stress-induced dysfunction in the subtype of neuronal cells and the change of synaptic plasticity and structural plasticity of nucleus accumbens (NAc) are implicated in depression symptomology. However, the molecular and epigenetic mechanisms and stresses to the NAc pathological changes in depression remain elusive. Materials and methods: In this study, treatment group mice were treated continually with the chronic unpredictable mild stress (CUMS) until expression of depression-like behaviors were found. Depression was confirmed with sucrose preference, novelty-suppressed feeding, forced swimming, and tail suspension tests. We applied high-throughput RNA sequencing to assess microRNA expression and transcriptional profiles in the NAc tissue from depression-like behaviors mice and control mice. The regulatory network of miRNAs/mRNAs was constructed based on the high-throughput RNA sequence and bioinformatics software predictions. Results: A total of 17 miRNAs and 10 mRNAs were significantly upregulated in the NAc of CUMS-induced mice with depression-like behaviors, and 12 miRNAs and 29 mRNAs were downregulated. A series of bioinformatics analyses showed that these altered miRNAs predicted target mRNA and differentially expressed mRNAs were significantly enriched in the MAPK signaling pathway, GABAergic synapse, dopaminergic synapse, cytokine–cytokine receptor interaction, axon guidance, regulation of autophagy, and so on. Furthermore, dual luciferase report assay and qRT-PCR results validated the miRNA/mRNA regulatory network. Conclusion: The deteriorations of GABAergic synapses, dopaminergic synapses, neurotransmitter synthesis, as well as autophagy-associated apoptotic pathway are associated with the molecular pathological mechanism of CUMS-induced depression.
机译:简介:严重抑郁症(MDD)是一种反复发作的毁灭性精神障碍,全球范围内影响着超过3.5亿人,并为社会带来了巨大的公共卫生和经济负担。因此,非常需要发现创新的疗法来有效地治疗抑郁症。应激引起的神经元细胞亚型功能障碍和伏伏核(NAc)突触可塑性和结构可塑性的变化与抑郁症的症状有关。然而,抑郁症的分子和表观遗传机制以及对NAc病理变化的压力仍然难以捉摸。材料和方法:在本研究中,对治疗组小鼠连续进行慢性不可预测的轻度应激(CUMS)治疗,直到发现其表现出抑郁样行为。抑郁症可通过蔗糖偏爱,抑制新奇喂养,强迫游泳和尾部悬吊试验来证实。我们应用高通量RNA测序来评估抑郁样行为小鼠和对照小鼠NAc组织中的microRNA表达和转录谱。基于高通量RNA序列和生物信息学软件预测,构建了miRNA / mRNA的调控网络。结果:在CUMS诱导的具有抑郁样行为的小鼠的NAc中共有17个miRNA和10个mRNA被显着上调,而12个miRNA和29个mRNA被下调。一系列的生物信息学分析表明,这些改变的miRNA预测了目标mRNA和差异表达的mRNA在MAPK信号传导途径,GABA能突触,多巴胺能突触,细胞因子-细胞因子受体相互作用,轴突指导,自噬调控等方面显着丰富。此外,双重荧光素酶报告检测和qRT-PCR结果验证了miRNA / mRNA调控网络。结论:GABA能突触,多巴胺能突触,神经递质合成以及自噬相关的凋亡途径的恶化与CUMS诱发抑郁症的分子病理机制有关。

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