Department of Biomedical Science, University of Sheffield, Sheffield S10 2TN, United Kindgom.
Mol Cell Biol. 2011 Apr;31(7):1432-43. doi: 10.1128/MCB.00451-10. Epub 2011 Jan 24.
The zinc finger transcription factor Gli3 is an essential mediator of hedgehog signaling. Gli3 has a dynamic expression pattern during embryonic development. In the neural tube, Gli3 transcripts are patterned along the anteroposterior and dorsoventral axes such that the initial broad expression in the posterior neural tube becomes dorsally restricted as neurogenesis takes place. Little is known about the molecular mechanisms that regulate this dynamic expression. Here, we report on a phylogenetic analysis of the Gli3 locus that uncovered a novel regulatory element, HCNE1. HCNE1 contains a compound Pbx/Meis binding site that binds Pbx and Meis/Prep proteins in vitro and in vivo. We show that HCNE1 recapitulates Gli3 expression in the developing neural tube and that mutations in the Pbx/Meis binding site affect the spatiotemporal control of HCNE1 transcriptional activity. Ectopic expression or loss of function of Pbx and Meis/Prep proteins in the chick and mouse embryo results in aberrant expression of endogenous Gli3 transcripts. We propose a novel role for TALE proteins in establishing the correct spatiotemporal expression pattern of Gli3 in the vertebrate spinal cord, thus implicating TALE transcription factors in early embryonic patterning events controlled by Sonic hedgehog signaling.
锌指转录因子 Gli3 是 hedgehog 信号通路的重要介质。Gli3 在胚胎发育过程中有一个动态的表达模式。在神经管中,Gli3 转录本沿前后轴和背腹轴排列,使得在后神经管中的初始广泛表达在神经发生时变得背侧受限。关于调节这种动态表达的分子机制知之甚少。在这里,我们对 Gli3 基因座进行了系统发育分析,揭示了一个新的调控元件 HCNE1。HCNE1 包含一个复合 Pbx/Meis 结合位点,该位点在体外和体内与 Pbx 和 Meis/Prep 蛋白结合。我们表明 HCNE1 重现了发育中的神经管中 Gli3 的表达,并且 Pbx/Meis 结合位点的突变影响了 HCNE1 转录活性的时空控制。在鸡和鼠胚胎中异位表达或功能丧失 Pbx 和 Meis/Prep 蛋白会导致内源性 Gli3 转录本的异常表达。我们提出了 TALE 蛋白在脊椎动物脊髓中建立正确的 Gli3 时空表达模式的新作用,从而暗示 TALE 转录因子参与了 Sonic hedgehog 信号控制的早期胚胎模式形成事件。