Allen Institute for Brain Science, Seattle, Washington 98103, USA.
Genes to Cognition Programme, Edinburgh University, Edinburgh EH16 4SB, UK.
Nature. 2012 Sep 20;489(7416):391-399. doi: 10.1038/nature11405.
Neuroanatomically precise, genome-wide maps of transcript distributions are critical resources to complement genomic sequence data and to correlate functional and genetic brain architecture. Here we describe the generation and analysis of a transcriptional atlas of the adult human brain, comprising extensive histological analysis and comprehensive microarray profiling of ∼900 neuroanatomically precise subdivisions in two individuals. Transcriptional regulation varies enormously by anatomical location, with different regions and their constituent cell types displaying robust molecular signatures that are highly conserved between individuals. Analysis of differential gene expression and gene co-expression relationships demonstrates that brain-wide variation strongly reflects the distributions of major cell classes such as neurons, oligodendrocytes, astrocytes and microglia. Local neighbourhood relationships between fine anatomical subdivisions are associated with discrete neuronal subtypes and genes involved with synaptic transmission. The neocortex displays a relatively homogeneous transcriptional pattern, but with distinct features associated selectively with primary sensorimotor cortices and with enriched frontal lobe expression. Notably, the spatial topography of the neocortex is strongly reflected in its molecular topography-the closer two cortical regions, the more similar their transcriptomes. This freely accessible online data resource forms a high-resolution transcriptional baseline for neurogenetic studies of normal and abnormal human brain function.
神经解剖精确、全基因组转录分布图谱是补充基因组序列数据和相关功能与遗传大脑结构的关键资源。本文描述了对成年人大脑转录图谱的生成和分析,包括对两个人类个体中约 900 个神经解剖精确细分区域的广泛组织学分析和全面的微阵列分析。转录调控在解剖位置上差异巨大,不同区域及其组成的细胞类型表现出高度个体间保守的稳健分子特征。差异基因表达和基因共表达关系的分析表明,大脑的广泛变化强烈反映了主要细胞类型(如神经元、少突胶质细胞、星形胶质细胞和小胶质细胞)的分布。精细解剖细分之间的局部邻域关系与离散的神经元亚型以及与突触传递相关的基因有关。新皮层显示出相对均匀的转录模式,但具有与初级感觉运动皮层选择性相关的独特特征,以及富含额叶的表达。值得注意的是,新皮层的空间拓扑结构强烈反映在其分子拓扑结构上——两个皮质区域越接近,其转录组就越相似。这个可免费获取的在线数据资源为正常和异常人类大脑功能的神经遗传学研究提供了高分辨率的转录基准。
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