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基因表达分析揭示了人类中枢神经系统20个区域之间的分子关系。

Gene expression analyses reveal molecular relationships among 20 regions of the human CNS.

作者信息

Roth Richard B, Hevezi Peter, Lee Jerry, Willhite Dorian, Lechner Sandra M, Foster Alan C, Zlotnik Albert

机构信息

Department of Molecular Medicine, Neurocrine Biosciences, Incorporated, 12790 El Camino Real, San Diego, CA 92130, USA.

出版信息

Neurogenetics. 2006 May;7(2):67-80. doi: 10.1007/s10048-006-0032-6. Epub 2006 Mar 30.

Abstract

Transcriptional profiling was performed to survey the global expression patterns of 20 anatomically distinct sites of the human central nervous system (CNS). Forty-five non-CNS tissues were also profiled to allow for comparative analyses. Using principal component analysis and hierarchical clustering, we were able to show that the expression patterns of the 20 CNS sites profiled were significantly different from all non-CNS tissues and were also similar to one another, indicating an underlying common expression signature. By focusing our analyses on the 20 sites of the CNS, we were able to show that these 20 sites could be segregated into discrete groups with underlying similarities in anatomical structure and, in many cases, functional activity. These findings suggest that gene expression data can help define CNS function at the molecular level. We have identified subsets of genes with the following patterns of expression: (1) across the CNS, suggesting homeostatic/housekeeping function; (2) in subsets of functionally related sites of the CNS identified by our unsupervised learning analyses; and (3) in single sites within the CNS, indicating their participation in distinct site-specific functions. By performing network analyses on these gene sets, we identified many pathways that are upregulated in particular sites of the CNS, some of which were previously described in the literature, validating both our dataset and approach. In summary, we have generated a database of gene expression that can be used to gain valuable insight into the molecular characterization of functions carried out by different sites of the human CNS.

摘要

进行转录谱分析以研究人类中枢神经系统(CNS)20个解剖学上不同部位的整体表达模式。还对45种非CNS组织进行了谱分析以进行比较分析。使用主成分分析和层次聚类,我们能够表明所分析的20个CNS部位的表达模式与所有非CNS组织显著不同,并且彼此之间也相似,这表明存在潜在的共同表达特征。通过将分析重点放在CNS的20个部位上,我们能够表明这20个部位可以分为具有解剖结构潜在相似性且在许多情况下具有功能活性相似性的离散组。这些发现表明基因表达数据可以在分子水平上帮助定义CNS功能。我们已经鉴定出具有以下表达模式的基因子集:(1)在整个CNS中,提示稳态/管家功能;(2)在我们通过无监督学习分析确定的CNS功能相关部位子集中;(3)在CNS内的单个部位中,表明它们参与不同的部位特异性功能。通过对这些基因集进行网络分析,我们确定了许多在CNS特定部位上调的途径,其中一些在文献中已有描述,这验证了我们的数据集和方法。总之,我们已经生成了一个基因表达数据库,可用于深入了解人类CNS不同部位执行的功能的分子特征。

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