de Chaldée Michel, Gaillard Marie-Claude, Bizat Nicolas, Buhler Jean-Marie, Manzoni Olivier, Bockaert Joël, Hantraye Philippe, Brouillet Emmanuel, Elalouf Jean-Marc
Service de Biochimie et de Génétique Moléculaire, Département de Biologie Joliot-Curie, Commissariat à l'Energie Atomique (CEA) Saclay, 91191 Gif-sur-Yvette Cedex, France.
Genome Res. 2003 Jul;13(7):1646-53. doi: 10.1101/gr.1173403.
Transcriptome analysis of mammalian brain structures is a potentially powerful approach in addressing the diversity of cerebral functions. Here, we used a microassay for serial analysis of gene expression (SAGE) to generate quantitative mRNA expression profiles of normal adult mouse striatum, nucleus accumbens, and somatosensory cortex. Comparison of these profiles revealed 135 transcripts heterogeneously distributed in the brain. Among them, a majority (78), although matching a registered sequence, are novel regional markers. To improve the anatomical resolution of our analysis, we performed in situ hybridization and observed unique expression patterns in discrete brain regions for a number of candidates. We assessed the distribution of the new markers in peripheral tissues using quantitative RT-PCR, Northern hybridization, and published SAGE data. In most cases, expression was higher in the brain than in peripheral tissues. Because the markers were selected according to their expression level, without reference to prior knowledge, our studies provide an unbiased, comprehensive molecular signature for various mammalian brain structures that can be used to investigate their plasticity under a variety of circumstances.
对哺乳动物脑结构进行转录组分析是解决大脑功能多样性问题的一种潜在有力方法。在此,我们使用一种用于基因表达序列分析(SAGE)的微量分析方法,生成正常成年小鼠纹状体、伏隔核和体感皮层的定量mRNA表达谱。这些图谱的比较揭示了135种在脑中异质分布的转录本。其中,大多数(78种)虽然与已注册序列匹配,但都是新的区域标志物。为了提高我们分析的解剖分辨率,我们进行了原位杂交,并观察到许多候选物在离散脑区的独特表达模式。我们使用定量RT-PCR、Northern杂交和已发表的SAGE数据评估了新标志物在周围组织中的分布。在大多数情况下,脑内的表达高于周围组织。由于这些标志物是根据其表达水平选择的,而没有参考先验知识,我们的研究为各种哺乳动物脑结构提供了一个无偏倚的、全面的分子特征,可用于研究它们在各种情况下的可塑性。