Tropepe Vincent, Li Shuhong, Dickinson Amanda, Gamse Joshua T, Sive Hazel L
Whitehead Institute for Biomedical Research, Cambridge, MA 02142, USA.
Dev Biol. 2006 Jan 15;289(2):517-29. doi: 10.1016/j.ydbio.2005.10.004. Epub 2005 Nov 22.
Expression of the transcription factor zic1 at the onset of gastrulation is one of the earliest molecular indicators of neural fate determination in Xenopus. Inhibition of bone morphogenetic protein (BMP) signaling is critical for activation of zic1 expression and fundamental for establishing neural identity in both vertebrates and invertebrates. The mechanism by which interruption of BMP signaling activates neural-specific gene expression is not understood. Here, we report identification of a 215 bp genomic module that is both necessary and sufficient to activate Xenopus zic1 transcription upon interruption of BMP signaling. Transgenic analyses demonstrate that this BMP inhibitory response module (BIRM) is required for expression in the whole embryo. Multiple consensus binding sites for specific transcription factor families within the BIRM are required for its activity and some of these regions are phylogenetically conserved between orthologous vertebrate zic1 genes. These data suggest that interruption of BMP signaling facilitates neural determination via a complex mechanism, involving multiple regulatory factors that cooperate to control zic1 expression.
转录因子zic1在原肠胚形成开始时的表达是非洲爪蟾神经命运决定的最早分子指标之一。骨形态发生蛋白(BMP)信号传导的抑制对于zic1表达的激活至关重要,并且是脊椎动物和无脊椎动物建立神经特性的基础。BMP信号传导中断激活神经特异性基因表达的机制尚不清楚。在这里,我们报告鉴定了一个215 bp的基因组模块,该模块在BMP信号传导中断时对于激活非洲爪蟾zic1转录既是必需的也是充分的。转基因分析表明,这个BMP抑制反应模块(BIRM)对于在整个胚胎中的表达是必需的。BIRM内特定转录因子家族的多个共有结合位点对于其活性是必需的,并且这些区域中的一些在直系同源脊椎动物zic1基因之间在系统发育上是保守的。这些数据表明,BMP信号传导的中断通过一种复杂的机制促进神经决定,该机制涉及多个协同控制zic1表达的调节因子。