Lu M F, Cheng H T, Kern M J, Potter S S, Tran B, Diekwisch T G, Martin J F
Alkek Institute of Biosciences and Technology, Center for Cancer Biology and Nutrition, Department of Medical Biochemistry and Genetics, Texas A&M University, Houston, TX 77030, USA.
Development. 1999 Feb;126(3):495-504. doi: 10.1242/dev.126.3.495.
The paired-related homeobox gene, prx-1, is expressed in the postmigratory cranial mesenchyme of all facial prominences and is required for the formation of proximal first arch derivatives. We introduced lacZ into the prx-1 locus to study the developmental fate of cells destined to express prx-1 in the prx-1 mutant background. lacZ was normally expressed in prx-1(neo); prx-1(lacZ )mutant craniofacial mesenchyme up until 11.5 d.p.c. At later time points, lacZ expression was lost from structures that are defective in the prx-1(neo) mutant mice. A related gene, prx-2, demonstrated overlapping expression with prx-1. To test the idea that prx-1 and prx-2 perform redundant functions, we generated prx-1(neo;)prx-2 compound mutant mice. Double mutant mice had novel phenotypes in which the rostral aspect of the mandible was defective, the mandibular incisor arrested as a single, bud-stage tooth germ and Meckel's cartilage was absent. Expression of two markers for tooth development, pax9 and patched, were downregulated. Using a transgene that marks a subset of prx-1-expressing cells in the craniofacial mesenchyme, we showed that cells within the hyoid arch take on the properties of the first branchial arch. These data suggest that prx-1 and prx-2 coordinately regulate gene expression in cells that contribute to the distal aspects of the mandibular arch mesenchyme and that prx-1 and prx-2 play a role in the maintenance of cell fate within the craniofacial mesenchyme.
配对相关同源框基因prx - 1在所有面部隆起迁移后的颅间充质中表达,是近端第一鳃弓衍生物形成所必需的。我们将lacZ导入prx - 1基因座,以研究在prx - 1突变背景下注定要表达prx - 1的细胞的发育命运。直到胚胎第11.5天,lacZ在prx - 1(neo); prx - 1(lacZ)突变的颅面间充质中正常表达。在随后的时间点,lacZ表达在prx - 1(neo)突变小鼠中有缺陷的结构中消失。一个相关基因prx - 2表现出与prx - 1重叠的表达。为了验证prx - 1和prx - 2执行冗余功能这一观点,我们构建了prx - 1(neo;); prx - 2复合突变小鼠。双突变小鼠具有新的表型,其中下颌骨的 Rostral 部分有缺陷,下颌切牙停滞为单个芽期牙胚,并且 Meckel 软骨缺失。牙齿发育的两个标志物pax9和patched的表达下调。使用一个标记颅面间充质中一部分表达prx - 1细胞的转基因,我们表明舌弓内的细胞具有第一鳃弓的特性。这些数据表明,prx - 1和prx - 2协同调节对下颌弓间充质远端有贡献的细胞中的基因表达,并且prx - 1和prx - 2在维持颅面间充质内的细胞命运中起作用。