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Neurogenomics of the Sympathetic Neurotransmitter Switch Indicates That Different Mechanisms Steer Cholinergic Differentiation in Rat and Chicken Models

机译:交感神经递质开关的神经基因组学表明,在大鼠和鸡模型中,不同的机制引导胆碱能分化。

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Vertebrate sympathetic neurons have the remarkable potential to switch their neurotransmitter phenotype from noradrenergic to cholinergic—a phenomenon that has been intensively studied in rat and chicken models. In both species, loss of noradrenergic markers and concomitant upregulation of cholinergic markers occurs in response to neuropoietic cytokines such as ciliary neurotrophic factor (CNTF). However, other aspects of the neurotransmitter switch including developmental timing, target tissues of cholinergic neurons, and dependence on neurotrophic factors differ between the two species. Here we compare CNTF-triggered transcriptome changes in both species by using DNA microarrays. CNTF induced changes in 1130 out of 16084 analyzed genomic loci in rat sympathetic neurons. When this set of genes was compared to CNTF-induced changes in the chicken transcriptome, a surprisingly small overlap was found—only 94 genes were regulated in the same direction in chicken and rat. The differential responses of the transcriptome to neuropoietic cytokines provide additional evidence that the cholinergic switch, although conserved during vertebrate evolution, is a heterogeneous phenomenon and may result from differential cellular mechanisms.
机译:脊椎动物交感神经元具有将其神经递质表型从去甲肾上腺素能转换成胆碱能的显着潜力,这一现象已在大鼠和鸡模型中进行了深入研究。在这两个物种中,响应神经生成细胞因子(例如睫状神经营养因子(CNTF)),都会出现去甲肾上腺素能标记的丧失和胆碱能标记的上调。但是,这两个物种之间的神经递质转换的其他方面包括发育时机,胆碱能神经元的靶组织以及对神经营养因子的依赖性。在这里,我们使用DNA微阵列比较了两个物种中CNTF触发的转录组变化。在16084个分析的大鼠交感神经元基因组位点中,CNTF诱导了1130个变化。将这组基因与CNTF诱导的鸡转录组变化进行比较时,发现了一个令人惊讶的小重叠-在鸡和大鼠中,只有94个基因在同一方向受到调控。转录组对神经生成细胞因子的不同反应提供了另外的证据,表明胆碱能开关尽管在脊椎动物进化过程中是保守的,但它是一种异质现象,可能是由不同的细胞机制引起的。

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