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人类产前大脑的转录组图谱。

Transcriptional landscape of the prenatal human brain.

机构信息

1] Allen Institute for Brain Science, Seattle, Washington 98103, USA [2].

Allen Institute for Brain Science, Seattle, Washington 98103, USA.

出版信息

Nature. 2014 Apr 10;508(7495):199-206. doi: 10.1038/nature13185. Epub 2014 Apr 2.

Abstract

The anatomical and functional architecture of the human brain is mainly determined by prenatal transcriptional processes. We describe an anatomically comprehensive atlas of the mid-gestational human brain, including de novo reference atlases, in situ hybridization, ultra-high-resolution magnetic resonance imaging (MRI) and microarray analysis on highly discrete laser-microdissected brain regions. In developing cerebral cortex, transcriptional differences are found between different proliferative and post-mitotic layers, wherein laminar signatures reflect cellular composition and developmental processes. Cytoarchitectural differences between human and mouse have molecular correlates, including species differences in gene expression in subplate, although surprisingly we find minimal differences between the inner and outer subventricular zones even though the outer zone is expanded in humans. Both germinal and post-mitotic cortical layers exhibit fronto-temporal gradients, with particular enrichment in the frontal lobe. Finally, many neurodevelopmental disorder and human-evolution-related genes show patterned expression, potentially underlying unique features of human cortical formation. These data provide a rich, freely-accessible resource for understanding human brain development.

摘要

人类大脑的解剖结构和功能结构主要由产前转录过程决定。我们描述了一个全面的人类大脑中期胚胎图谱,包括从头参考图谱、原位杂交、超高分辨率磁共振成像(MRI)和对高度离散激光微切割脑区的微阵列分析。在发育中的大脑皮层中,不同增殖和有丝分裂后层之间存在转录差异,其中层特征反映了细胞组成和发育过程。人类和小鼠之间的细胞结构差异具有分子相关性,包括基板中基因表达的物种差异,尽管令人惊讶的是,我们发现内、外室管膜下区之间的差异极小,尽管外区在人类中扩张了。生发和有丝分裂后的皮质层都表现出额颞梯度,额叶尤其丰富。最后,许多神经发育障碍和人类进化相关基因表现出有模式的表达,可能是人类皮质形成独特特征的基础。这些数据为理解人类大脑发育提供了丰富的、可自由获取的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/621d/4105188/67757f5aa0fa/nihms571145f1.jpg

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