School of Life Sciences, University of Sussex, Falmer, Brighton BN1 9QG, UK.
Dev Biol. 2013 Feb 1;374(1):210-22. doi: 10.1016/j.ydbio.2012.11.028. Epub 2012 Dec 3.
The analysis of Fgf10 mouse mutants has demonstrated a critical role for this ligand in neurosensory development of the vertebrate inner ear, and we have been looking to define the direct upstream regulators of Fgf10 in this sensory organ, as part of constructing the programme of early inner ear development. Through the analysis of reporter constructs in transgenic mouse embryos and neonatal mice, in this report we define a minimal 1400 bp enhancer from the 5' flanking region of Fgf10. This enhancer drives reporter transgene expression in a manner that recapitulates endogenous expression of Fgf10, from its initial onset in the invaginating otic placode and onwards throughout gestation, controlling Fgf10 expression in all developing sensory patches and in the developing VIIIth ganglion. This regulatory region includes three putative Gata3 binding sites that we demonstrate directly interacts with Gata3 protein through the DNA binding domain with differing affinities. Site directed mutagenesis of all three sites and functional testing in transgenic embryos using reporter transgenes reveals an absolute requirement for Gata3 in controlling Fgf10 expression. Transgenic analysis of individual Gata3 binding site mutations illustrates that only one of these binding sites is necessary for reporter expression. Together these data demonstrate that Gata3 directly activates Fgf10 in the early inner ear, and does so through a single binding site.
对 Fgf10 小鼠突变体的分析表明,这种配体在脊椎动物内耳的神经感觉发育中起着关键作用,我们一直在寻找该感觉器官中 Fgf10 的直接上游调节因子,作为构建早期内耳发育计划的一部分。通过对转基因小鼠胚胎和新生小鼠报告基因构建体的分析,在本报告中,我们定义了 Fgf10 5'侧翼区的一个最小的 1400bp 增强子。该增强子以与内源性 Fgf10 表达相吻合的方式驱动报告基因的表达,从其在向内卷曲的耳板的初始起始,并在整个妊娠期持续,控制所有发育中的感觉斑块和发育中的第八神经节中的 Fgf10 表达。这个调节区域包括三个假定的 Gata3 结合位点,我们通过 DNA 结合域以不同的亲和力直接证明了它们与 Gata3 蛋白的相互作用。通过定向突变所有三个位点并用报告基因转染体在转基因胚胎中进行功能测试,发现 Gata3 绝对需要控制 Fgf10 的表达。对单个 Gata3 结合位点突变的转基因分析表明,只有一个结合位点对于报告基因的表达是必需的。这些数据共同表明,Gata3 直接在早期内耳中激活 Fgf10,并且通过单个结合位点实现。