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首页> 外文期刊>BMC Genomics >Chronic nicotine differentially affects murine transcriptome profiling in isolated cortical interneurons and pyramidal neurons
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Chronic nicotine differentially affects murine transcriptome profiling in isolated cortical interneurons and pyramidal neurons

机译:慢性尼古丁有差异地影响孤立的皮层神经元和锥体神经元的鼠转录组谱。

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Background Nicotine is known to differentially regulate cortical interneuron and pyramidal neuron activities in the neocortex, while the underlying molecular mechanisms have not been well studied. In this study, RNA-sequencing was performed in acutely isolated cortical somatostatin (Sst)- positive interneurons and pyramidal neurons (Thy1) from mice treated with systemic nicotine for 14?days. We assessed the differentially expressed genes (DEGs) by nicotine in Sst- or Thy1- neurons, respectively, and then compared DEGs between Sst- and Thy1- neurons in the absence and presence of nicotine. Results In Sst-neurons, the DEGs by nicotine were associated with glycerophospholipid and nicotinate and nicotinamide metabolism; while in Thy1-neurons those related to immune response and purine and pyrimidine metabolisms were affected. Under basal condition, the DEGs between Sst- and Thy1- neurons were frequently associated with signal transduction, phosphorylation and potassium channel regulation. However, some new DEGs between Sst- and Thy1- neurons were found after nicotine, the majority of which belong to mitochondrial respiratory chain complex. Conclusions Nicotine differentially affected subset of genes in Sst- and Thy1- neurons, which might contribute to the distinct effect of nicotine on interneuron and pyramidal neuron activities. Meanwhile, the altered transcripts associated with mitochondrial activity were found between interneurons and pyramidal neurons after chronic nicotine.
机译:背景技术已知尼古丁可差异调节新皮质中的皮层神经元和锥体神经元活动,而其潜在的分子机制尚未得到充分研究。在这项研究中,RNA测序是在接受全身性尼古丁治疗14天的小鼠急性分离的皮质生长抑素(Sst)阳性中间神经元和锥体神经元(Thy1)中进行的。我们分别评估了尼古丁在Sst-或Thy1-神经元中的差异表达基因(DEGs),然后比较了在没有尼古丁和存在尼古丁的情况下Sst-和Thy1-神经元之间的DEG。结果在Sst神经元中,尼古丁的DEG与甘油磷脂,烟酸酯和烟酰胺的代谢有关。而在Thy1-神经元中,与免疫反应以及嘌呤和嘧啶代谢有关的那些受到影响。在基础条件下,Sst-和Thy1-神经元之间的DEGs经常与信号转导,磷酸化和钾通道调节有关。然而,尼古丁后在Sst-和Thy1-神经元之间发现了一些新的DEG,其中大多数属于线粒体呼吸链复合体。结论尼古丁对Sst和Thy1神经元的基因亚组有不同的影响,这可能有助于尼古丁对神经元间和锥体神经元活动的独特影响。同时,在慢性尼古丁治疗后,在神经元和锥体神经元之间发现了与线粒体活性相关的转录物。

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