Department of Cell and Developmental Biology, Institute of Life Sciences, Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Mol Cell Neurosci. 2011 Jan;46(1):187-99. doi: 10.1016/j.mcn.2010.09.002. Epub 2010 Sep 16.
The development of the neural tube into a complex central nervous system involves morphological, cellular and molecular changes, all of which are tightly regulated. The floor plate (FP) is a critical organizing center located at the ventral-most midline of the neural tube. FP cells regulate dorsoventral patterning, differentiation and axon guidance by secreting morphogens. Here we show that the bHLH transcription factor Nato3 (Ferd3l) is specifically expressed in the spinal FP of chick and mouse embryos. Using in ovo electroporation to understand the regulation of the FP-specific expression of Nato3, we have identified an evolutionarily conserved 204 bp genomic region, which is necessary and sufficient to drive expression to the chick FP. This promoter contains two Foxa2-binding sites, which are highly conserved among distant phyla. The two sites can bind Foxa2 in vitro, and are necessary for the expression in the FP in vivo. Gain and loss of Foxa2 function in vivo further emphasize its role in Nato3 promoter activity. Thus, our data suggest that Nato3 is a direct target of Foxa2, a transcription activator and effector of Sonic hedgehog, the hallmark regulator of FP induction and spinal cord development. The identification of the FP-specific promoter is an important step towards a better understanding of the molecular mechanisms through which Nato3 transcription is regulated and for uncovering its function during nervous system development. Moreover, the promoter provides us with a powerful tool for conditional genetic manipulations in the FP.
神经管发育为复杂的中枢神经系统涉及形态、细胞和分子变化,所有这些变化都受到严格的调控。基板(floor plate,FP)是位于神经管腹侧最中线的关键组织中心。FP 细胞通过分泌形态发生素来调节背腹模式、分化和轴突导向。在这里,我们表明 bHLH 转录因子 Nato3(Ferd3l)特异性表达在鸡和鼠胚胎的脊髓 FP 中。通过在鸡胚中进行电穿孔实验以了解 Nato3 的 FP 特异性表达的调控,我们已经确定了一个进化上保守的 204 个碱基对的基因组区域,该区域对于将表达驱动到鸡 FP 是必需且充分的。该启动子包含两个 Foxa2 结合位点,这些位点在远缘门之间高度保守。这两个位点可以在体外结合 Foxa2,并且对于体内在 FP 中的表达是必需的。Foxa2 功能的获得和丧失在体内进一步强调了其在 Nato3 启动子活性中的作用。因此,我们的数据表明 Nato3 是 Foxa2 的直接靶标,Foxa2 是 Sonic hedgehog 的转录激活因子和效应因子,Sonic hedgehog 是 FP 诱导和脊髓发育的标志性调节剂。鉴定 FP 特异性启动子是更好地理解 Nato3 转录调控的分子机制以及揭示其在神经系统发育过程中的功能的重要步骤。此外,该启动子为我们在 FP 中进行条件性遗传操作提供了一个强大的工具。