首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >A genome-scale analysis of the cis-regulatory circuitry underlying sonic hedgehog-mediated patterning of the mammalian limb.
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A genome-scale analysis of the cis-regulatory circuitry underlying sonic hedgehog-mediated patterning of the mammalian limb.

机译:基因组规模的声波刺猬介导的哺乳动物肢体的顺式调控电路的分析。

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摘要

Sonic hedgehog (Shh) signals via Gli transcription factors to direct digit number and identity in the vertebrate limb. We characterized the Gli-dependent cis-regulatory network through a combination of whole-genome chromatin immunoprecipitation (ChIP)-on-chip and transcriptional profiling of the developing mouse limb. These analyses identified approximately 5000 high-quality Gli3-binding sites, including all known Gli-dependent enhancers. Discrete binding regions exhibit a higher-order clustering, highlighting the complexity of cis-regulatory interactions. Further, Gli3 binds inertly to previously identified neural-specific Gli enhancers, demonstrating the accessibility of their cis-regulatory elements. Intersection of DNA binding data with gene expression profiles predicted 205 putative limb target genes. A subset of putative cis-regulatory regions were analyzed in transgenic embryos, establishing Blimp1 as a direct Gli target and identifying Gli activator signaling in a direct, long-range regulation of the BMP antagonist Gremlin. In contrast, a long-range silencer cassette downstream from Hand2 likely mediates Gli3 repression in the anterior limb. These studies provide the first comprehensive characterization of the transcriptional output of a Shh-patterning process in the mammalian embryo and a framework for elaborating regulatory networks in the developing limb.
机译:声波刺猬(Shh)通过Gli转录因子发出信号,以指示脊椎动物肢体中的数字和身份。我们通过全基因组染色质免疫沉淀(ChIP)芯片和发展中的小鼠肢体的转录谱的组合来表征Gli依赖的顺式调节网络。这些分析鉴定了大约5000个高质量的Gli3结合位点,包括所有已知的Gli依赖性增强子。离散的结合区域表现出更高阶的聚类,突出了顺式-调控相互作用的复杂性。此外,Gli3与先前鉴定的神经特异性Gli增强子呈惰性结合,证明了其顺式调控元件的可及性。 DNA结合数据与基因表达谱的交会预测了205个假定的肢体靶基因。在转基因胚胎中分析了一个假定的顺式调节区域的子集,将Blimp1建立为直接的Gli靶标,并在BMP拮抗剂Gremlin的直接,远距离调节中鉴定了Gli激活剂信号传导。相比之下,Hand2下游的远程消音器可能会介导前肢的Gli3抑制。这些研究提供了哺乳动物胚胎中Shh模式化过程的转录输出的首次综合表征,以及为发育中的肢体建立调控网络的框架。

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