Tümpel Stefan, Cambronero Francisco, Ferretti Elisabetta, Blasi Francesco, Wiedemann Leanne M, Krumlauf Robb
Stowers Institute for Medical Research, 1000 E. 50th Street, Kansas City, MO 64110, USA.
Dev Biol. 2007 Feb 15;302(2):646-60. doi: 10.1016/j.ydbio.2006.10.029. Epub 2006 Oct 25.
The Hoxa2 gene is an important component of regulatory events during hindbrain segmentation and head development in vertebrates. In this study we have used sequenced comparisons of the Hoxa2 locus from 12 vertebrate species in combination with detailed regulatory analyses in mouse and chicken embryos to characterize the mechanistic basis for the regulation of Hoxa2 in rhombomere (r) 4. A highly conserved region in the Hoxa2 intron functions as an r4 enhancer. In vitro binding studies demonstrate that within the conserved region three bipartite Hox/Pbx binding sites (PH1-PH3) in combination with a single binding site for Pbx-Prep/Meis (PM) heterodimers co-operate to regulate enhancer activity in r4. Mutational analysis reveals that these sites are required for activity of the enhancer, suggesting that the r4 enhancer from Hoxa2 functions in vivo as a Hox-response module in combination with the Hox cofactors, Pbx and Prep/Meis. Furthermore, this r4 enhancer is capable of mediating a response to ectopic HOXB1 expression in the hindbrain. These findings reveal that Hoxa2 is a target gene of Hoxb1 and permit us to develop a gene regulatory network for r4, whereby Hoxa2, along with Hoxb1, Hoxb2 and Hoxa1, is integrated into a series of auto- and cross-regulatory loops between Hox genes. These data highlight the important role played by direct cross-talk between Hox genes in regulating hindbrain patterning.
Hoxa2基因是脊椎动物后脑节段化和头部发育过程中调控事件的重要组成部分。在本研究中,我们结合对12种脊椎动物物种的Hoxa2基因座进行序列比较,以及在小鼠和鸡胚胎中进行详细的调控分析,来表征菱形区(r)4中Hoxa2基因调控的机制基础。Hoxa2基因内含子中的一个高度保守区域作为r4增强子发挥作用。体外结合研究表明,在保守区域内,三个二分体Hox/Pbx结合位点(PH1 - PH3)与一个Pbx - Prep/Meis(PM)异二聚体结合位点协同作用,以调节r4中的增强子活性。突变分析表明,这些位点是增强子活性所必需的,这表明来自Hoxa2的r4增强子在体内作为一个与Hox辅因子Pbx和Prep/Meis结合的Hox反应模块发挥作用。此外,这个r4增强子能够介导后脑对异位HOXB1表达的反应。这些发现揭示了Hoxa2是Hoxb1的靶基因,并使我们能够构建一个r4的基因调控网络,据此Hoxa2与Hoxb1、Hoxb2和Hoxa1一起被整合到Hox基因之间的一系列自调控和交叉调控环中。这些数据突出了Hox基因之间直接相互作用在调节后脑模式形成中所起的重要作用。