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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Gene expression profile after intense second messenger activation in cortical primary neurones.
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Gene expression profile after intense second messenger activation in cortical primary neurones.

机译:皮质原代神经元中强烈的第二信使激活后的基因表达谱。

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Numerous stimuli induce immediate early gene (IEG) expression in neurones, but a comprehensive overview of the late-response genes is lacking. Therefore we aimed to identify changes in the neuronal gene expression profile following intense stimulation. Forskolin and 12-O-tetradecanoylphorbol-13-acetate (TPA), direct activators of intracellular second messengers, were applied to primary cultured cortical neurones. The gene expression profiles were analyzed on Affymetrix DNA chips which cover around 8000 rat genes. Out of these, 95 genes (1.2%) were increased at least three-fold, and 43 genes (0.5%) were at least three-fold decreased. The gene chip results were verified by testing 15 of the altered genes by quantitative real-time PCR. The majority of the up-regulated genes were transcription factors, neurotrophic factors or (putative) neuropeptides. Furthermore, there were marked changes in intracellular signal processing enzymes and in postsynaptic structural proteins (e.g. vesl, arc, narp), which have been implicated in synaptic plasticity. Notably, classical players in neurotransmission or plasticity such as glutamate and GABA receptors or voltage-gated ion channels were not increased. It is likely that the increased production of components of intracellular signalling and of postsynaptic proteins is involved in neuronal plasticity.
机译:许多刺激诱导神经元中立即早期基因(IEG)的表达,但缺乏对后期反应基因的全面概述。因此,我们旨在确定强烈刺激后神经元基因表达谱的变化。细胞内第二信使的直接激活剂Forskolin和12-O-十四烷酰佛波醇13-乙酸盐(TPA)被应用于原代培养的皮层神经元。基因表达谱在涵盖约8000个大鼠基因的Affymetrix DNA芯片上进行了分析。其中,95个基因(1.2%)增加了至少三倍,而43个基因(0.5%)减少了至少三倍。通过定量实时PCR检测15个改变的基因,验证了基因芯片结果。大部分上调的基因是转录因子,神经营养因子或(假定的)神经肽。此外,细胞内信号处理酶和突触后结构蛋白(例如vesl,arc,narp)有明显的变化,这些变化与突触可塑性有关。值得注意的是,神经传递或可塑性的经典参与者如谷氨酸和GABA受体或电压门控离子通道没有增加。细胞内信号传导和突触后蛋白成分的增加产量可能与神经元可塑性有关。

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