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果蝇早期中胚层发育的核心转录网络。

A core transcriptional network for early mesoderm development in Drosophila melanogaster.

作者信息

Sandmann Thomas, Girardot Charles, Brehme Marc, Tongprasit Waraporn, Stolc Viktor, Furlong Eileen E M

机构信息

European Molecular Biology Laboratory, D-69117 Heidelberg, Germany.

出版信息

Genes Dev. 2007 Feb 15;21(4):436-49. doi: 10.1101/gad.1509007.

Abstract

Embryogenesis is controlled by large gene-regulatory networks, which generate spatially and temporally refined patterns of gene expression. Here, we report the characteristics of the regulatory network orchestrating early mesodermal development in the fruitfly Drosophila, where the transcription factor Twist is both necessary and sufficient to drive development. Through the integration of chromatin immunoprecipitation followed by microarray analysis (ChIP-on-chip) experiments during discrete time periods with computational approaches, we identified >2000 Twist-bound cis-regulatory modules (CRMs) and almost 500 direct target genes. Unexpectedly, Twist regulates an almost complete cassette of genes required for cell proliferation in addition to genes essential for morophogenesis and cell migration. Twist targets almost 25% of all annotated Drosophila transcription factors, which may represent the entire set of regulators necessary for the early development of this system. By combining in vivo binding data from Twist, Mef2, Tinman, and Dorsal we have constructed an initial transcriptional network of early mesoderm development. The network topology reveals extensive combinatorial binding, feed-forward regulation, and complex logical outputs as prevalent features. In addition to binary activation and repression, we suggest that Twist binds to almost all mesodermal CRMs to provide the competence to integrate inputs from more specialized transcription factors.

摘要

胚胎发育受大型基因调控网络控制,该网络产生空间和时间上精细的基因表达模式。在此,我们报告了果蝇中协调早期中胚层发育的调控网络的特征,其中转录因子Twist对于驱动发育既必要又充分。通过在离散时间段内将染色质免疫沉淀后微阵列分析(芯片上的染色质免疫沉淀,ChIP-on-chip)实验与计算方法相结合,我们鉴定出2000多个Twist结合的顺式调控模块(CRM)和近500个直接靶基因。出乎意料的是,Twist除了调控形态发生和细胞迁移所必需的基因外,还调控几乎完整的细胞增殖所需基因盒。Twist靶向几乎25%的所有已注释果蝇转录因子,这可能代表了该系统早期发育所需的全部调控因子集合。通过结合来自Twist、Mef2、Tinman和Dorsal的体内结合数据,我们构建了早期中胚层发育的初始转录网络。网络拓扑结构显示广泛的组合结合、前馈调节和复杂的逻辑输出是普遍特征。除了二元激活和抑制外,我们认为Twist与几乎所有中胚层CRM结合,以提供整合来自更特异性转录因子输入的能力。

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