首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Regulatory analysis of the mouse Fgf3 gene: control of embryonic expression patterns and dependence upon sonic hedgehog (Shh) signalling.
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Regulatory analysis of the mouse Fgf3 gene: control of embryonic expression patterns and dependence upon sonic hedgehog (Shh) signalling.

机译:小鼠Fgf3基因的调控分析:胚胎表达模式的控制和对声波刺猬(Shh)信号的依赖性。

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摘要

Fgf3 displays a dynamic and complex expression pattern during mouse embryogenesis. To address the molecular mechanisms underlying Fgf3 expression, we used a transgenic approach to assay genomic regions from the mouse Fgf3 gene for regulatory activity. We identified an enhancer that mediates major components of embryonic expression, governing expression in the midbrain, hindbrain, surface ectoderm, dorsal roots and dorsal root ganglia (DRG), proximal sensory ganglia, and the developing central nervous system (CNS). Deletional analysis of the enhancer further delimited this regulatory activity to a 5.7-kb fragment. We have also revealed sonic hedgehog (Shh) -dependent and Shh-independent aspects of Fgf3 expression through breeding the Fgf3 reporter transgene into Shh mutants. In the absence of Shh signalling, Fgf3 reporter expression is lost in the ventral CNS, DRG, and superior cervical nerves, whereas activation of reporter expression in cranial ganglion cells is Shh independent. Moreover, detailed re-examination of the Shh phenotype revealed that Shh signalling is required for the correct development/maturation of the DRG.
机译:Fgf3在小鼠胚胎发生过程中显示动态和复杂的表达模式。为了解决潜在的Fgf3表达的分子机制,我们使用了转基因方法来检测小鼠Fgf3基因的基因组区域的调控活性。我们确定了一个增强子,它介导了胚胎表达的主要成分,控制着中脑,后脑,表面外胚层,背根和背根神经节(DRG),近端感觉神经节以及发育中的中枢神经系统(CNS)的表达。增强子的缺失分析进一步将这种调节活性限定为5.7kb的片段。我们还通过将Fgf3报告基因转基因繁殖为Shh突变体,揭示了Fgf3表达的声波刺猬(Shh)依赖性和Shh非依赖性。在没有Shh信号传导的情况下,Fgf3报告基因表达在腹侧中枢神经系统,DRG和上颈神经中丢失,而颅神经节细胞中报告基因表达的激活与Shh无关。而且,对Shh表型的详细重新检查表明,Shh信号传导对于DRG的正确发育/成熟是必需的。

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