Department of Pharmacology, School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, United States.
Pharmacol Ther. 2011 Mar;129(3):241-59. doi: 10.1016/j.pharmthera.2010.09.010. Epub 2010 Oct 21.
We report on an 'unbiased' molecular characterization of individual, adult neurons, active in a central, anterior hypothalamic neuronal circuit, by establishing cDNA libraries from each individual, electrophysiologically identified warm sensitive neuron (WSN). The cDNA libraries were analyzed by Affymetrix microarray. The presence and frequency of cDNAs were confirmed and enhanced with Illumina sequencing of each single cell cDNA library. cDNAs encoding the GABA biosynthetic enzyme Gad1 and of adrenomedullin, galanin, prodynorphin, somatostatin, and tachykinin were found in the WSNs. The functional cellular and in vivo studies on dozens of the more than 500 neurotransmitters, hormone receptors and ion channels, whose cDNA was identified and sequence confirmed, suggest little or no discrepancy between the transcriptional and functional data in WSNs; whenever agonists were available for a receptor whose cDNA was identified, a functional response was found. Sequencing single neuron libraries permitted identification of rarely expressed receptors like the insulin receptor, adiponectin receptor 2 and of receptor heterodimers; information that is lost when pooling cells leads to dilution of signals and mixing signals. Despite the common electrophysiological phenotype and uniform Gad1 expression, WSN transcriptomes show heterogeneity, suggesting strong epigenetic influence on the transcriptome. Our study suggests that it is well-worth interrogating the cDNA libraries of single neurons by sequencing and chipping.
我们通过从每个电生理鉴定的热敏神经元 (WSN) 中建立 cDNA 文库,报告了对中央前下丘脑神经元回路中活跃的单个成年神经元进行“无偏”分子特征分析。使用 Affymetrix 微阵列分析 cDNA 文库。使用 Illumina 对每个单细胞 cDNA 文库进行测序,确认和增强了 cDNA 的存在和频率。在 WSN 中发现了 GABA 生物合成酶 Gad1 和肾上腺髓质素、甘丙肽、前强啡肽、生长抑素和速激肽的 cDNA。对鉴定出 cDNA 并确认序列的 500 多种神经递质、激素受体和离子通道中的数十种进行功能细胞和体内研究表明,在 WSN 中,转录和功能数据之间几乎没有差异;只要鉴定出 cDNA 的受体有激动剂,就会发现功能反应。对单个神经元文库进行测序允许鉴定出像胰岛素受体、脂联素受体 2 这样的表达较少的受体,以及受体异二聚体;当将细胞混合以导致信号稀释和混合信号时,这些信息就会丢失。尽管具有共同的电生理表型和均匀的 Gad1 表达,但 WSN 转录组显示出异质性,这表明表观遗传对转录组有很大影响。我们的研究表明,通过测序和芯片对单个神经元的 cDNA 文库进行检测是值得的。