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Comparative gene expression analysis reveals a characteristic molecular profile of the superior olivary complex

机译:比较基因表达分析揭示了上层橄榄复合物的特征分子谱

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The superior olivary complex (SOC) is a very conspicuous structure in the mammalian auditory brainstem. It represents the first binaural processing center and is important for sound localization in the azimuth and in feedback regulation of cochlear function. In order to define molecular determinants of the SOC, which are of potential functional relevance, we have performed a comprehensive analysis of its transcriptome by serial analysis of gene expression in adult rats. Here, we performed a detailed analysis of the SOC's gene expression profile compared to that of two other neural tissues, the striatum and the hippocampus, and with extraocular muscle tissue. This tested the hypothesis that SOC-specific or significantly upregulated transcripts provide candidates for the specific function of auditory neurons. Thirty-three genes were significantly upregulated in the SOC when compared to the two other neural tissues. Thirteen encoded proteins involved in neurotransmission, including action potential propagation, exocytosis, and myelination; five genes are important for the energy metabolism, and five transcripts are unknown or poorly characterized and have yet to be described in the nervous system. The comparison of functional gene classes indicates that the SOC has the highest energy demand of the three neural tissues, yet protein turnover is apparently not increased. This suggests a high energy demand for fueling auditory neurotransmission. Such a demand may have implications on auditory-specific tasks and relate to central auditory processing disorders. Ultimately, these data provide new avenues to foster investigations of auditory function and to advance molecular physiology in the central auditory system.
机译:上橄榄复合体(SOC)是哺乳动物听觉脑干中非常明显的结构。它代表了第一个双耳加工中心,对于方位角中的声音定位和耳蜗功能的反馈调节非常重要。为了定义具有潜在功能相关性的SOC分子决定簇,我们通过成年大鼠基因表达的系列分析对它的转录组进行了全面分析。在这里,我们对SOC的基因表达谱与其他两个神经组织(纹状体和海马体以及眼外肌组织)进行了比较详细的分析。这验证了SOC特定或显着上调的转录本为听神经元的特定功能提供候选的假设。与其他两个神经组织相比,SOC中的33个基因显着上调。十三种参与神经传递的编码蛋白,包括动作电位的传播,胞吐作用和髓鞘形成;五个基因对能量代谢很重要,五个转录物未知或表征不充分,尚未在神经系统中描述。功能基因类别的比较表明,SOC在三个神经组织中具有最高的能量需求,但蛋白质更新显然没有增加。这表明对听觉神经传递的能量需求很高。这种需求可能会影响特定于听觉的任务,并与中枢听觉加工障碍有关。最终,这些数据提供了新的途径来促进对听觉功能的研究并促进中央听觉系统中的分子生理学。

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