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Neurotransmitter phenotype-specific expression changes in developing sympathetic neurons

机译:神经递质表型特异性表达在发展中的交感神经元中的变化

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During late developmental phases individual sympathetic neurons undergo a switch from noradrenergic to cholinergic neurotransmission. This phenomenon of plasticity depends on target-derived signals in vivo and is triggered by neurotrophic factors in neuronal cultures. To analyze genome-wide expression differences between the two transmitter phenotypes we employed DNA microarrays. RNA expression profiles were obtained from chick paravertebral sympathetic ganglia, treated with neurotrophin 3, glial cell line-derived neurotrophic factor or ciliary neurotrophic factor, all of which stimulate cholinergic differentiation. Results were compared with the effect of nerve growth factor, which functions as a pro-noradrenergic stimulus. The gene set common to all three comparisons defined the noradrenergic and cholinergic synexpression groups. Several functional categories, such as signal transduction, G-protein-coupled signaling, cation transport, neurogenesis and synaptic transmission, were enriched in these groups. Experiments based on the prediction that some of the identified genes play a role in the neurotransmitter switch identified bone morphogenetic protein signaling as an inhibitor of cholinergic differentiation. (c) 2007 Elsevier Inc. All rights reserved.
机译:在晚期发育阶段,单个交感神经元经历了从去甲肾上腺素能传递到胆碱能神经传递的转变。这种可塑性现象取决于体内靶标来源的信号,并由神经元培养物中的神经营养因子触发。为了分析两种发射器表型之间的全基因组表达差异,我们采用了DNA微阵列。 RNA表达图谱从雏鸡椎旁交感神经节获得,用神经营养蛋白3,胶质细胞系衍生的神经营养因子或睫状神经营养因子处理,所有这些刺激胆碱能分化。将结果与神经生长因子的作用进行了比较,神经生长因子起了正肾上腺素能的刺激作用。这三个比较所共有的基因组定义了去甲肾上腺素能和胆碱能协同表达组。这些组中丰富了几个功能类别,例如信号转导,G蛋白偶联信号传导,阳离子转运,神经发生和突触传递。基于预测的结果,即某些已鉴定的基因在神经递质转换中起作用的实验,将骨形态发生蛋白信号转导鉴定为胆碱能分化的抑制剂。 (c)2007 Elsevier Inc.保留所有权利。

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