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通过高通量原位杂交进行调控通路分析。

Regulatory pathway analysis by high-throughput in situ hybridization.

作者信息

Visel Axel, Carson James, Oldekamp Judit, Warnecke Marei, Jakubcakova Vladimira, Zhou Xunlei, Shaw Chad A, Alvarez-Bolado Gonzalo, Eichele Gregor

机构信息

Department of Genes and Behavior, Max Planck Institute of Biophysical Chemistry, Goettingen, Germany.

出版信息

PLoS Genet. 2007 Oct;3(10):1867-83. doi: 10.1371/journal.pgen.0030178.

Abstract

Automated in situ hybridization enables the construction of comprehensive atlases of gene expression patterns in mammals. Such atlases can become Web-searchable digital expression maps of individual genes and thus offer an entryway to elucidate genetic interactions and signaling pathways. Towards this end, an atlas housing approximately 1,000 spatial gene expression patterns of the midgestation mouse embryo was generated. Patterns were textually annotated using a controlled vocabulary comprising >90 anatomical features. Hierarchical clustering of annotations was carried out using distance scores calculated from the similarity between pairs of patterns across all anatomical structures. This process ordered hundreds of complex expression patterns into a matrix that reflects the embryonic architecture and the relatedness of patterns of expression. Clustering yielded 12 distinct groups of expression patterns. Because of the similarity of expression patterns within a group, members of each group may be components of regulatory cascades. We focused on the group containing Pax6, an evolutionary conserved transcriptional master mediator of development. Seventeen of the 82 genes in this group showed a change of expression in the developing neocortex of Pax6-deficient embryos. Electromobility shift assays were used to test for the presence of Pax6-paired domain binding sites. This led to the identification of 12 genes not previously known as potential targets of Pax6 regulation. These findings suggest that cluster analysis of annotated gene expression patterns obtained by automated in situ hybridization is a novel approach for identifying components of signaling cascades.

摘要

自动化原位杂交技术能够构建哺乳动物基因表达模式的综合图谱。此类图谱可成为可通过网络搜索的单个基因数字表达图谱,从而为阐明基因相互作用和信号通路提供途径。为此,生成了一个包含约1000个妊娠中期小鼠胚胎空间基因表达模式的图谱。使用包含90多个解剖学特征的受控词汇对这些模式进行了文本注释。利用从所有解剖结构中模式对之间的相似性计算得出的距离分数,对注释进行层次聚类。这一过程将数百个复杂的表达模式排列成一个反映胚胎结构和表达模式相关性的矩阵。聚类产生了12个不同的表达模式组。由于一组内表达模式的相似性,每组的成员可能是调控级联反应的组成部分。我们重点关注了包含Pax6的组,Pax6是发育过程中进化保守的转录主调节因子。该组82个基因中有17个在Pax6缺陷胚胎的新皮质发育过程中表现出表达变化。采用电泳迁移率变动分析来检测Pax6配对结构域结合位点的存在。这导致鉴定出12个以前未知的Pax6调控潜在靶基因。这些发现表明,通过自动化原位杂交获得的注释基因表达模式的聚类分析是识别信号级联反应组成部分的一种新方法。

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