Han Jun, Ito Yoshihiro, Yeo Jae Yong, Sucov Henry M, Maas Richard, Chai Yang
School of Dentistry, University of Southern California, 2250 Alcazar Street, CSA 103, Los Angeles, CA 90033, USA.
Dev Biol. 2003 Sep 1;261(1):183-96. doi: 10.1016/s0012-1606(03)00300-2.
Neural crest cells are multipotential progenitors that contribute to various cell and tissue types during embryogenesis. Here, we have investigated the molecular and cellular mechanism by which the fate of neural crest cell is regulated during tooth development. Using a two- component genetic system for indelibly marking the progeny of neural crest cells, we provide in vivo evidence of a deficiency of CNC-derived dental mesenchyme in Msx1 null mutant mouse embryos. The deficiency of the CNC results from an elevated CDK inhibitor p19(INK4d) activity and the disruption of cell proliferation. Interestingly, in the absence of Msx1, the CNC-derived dental mesenchyme misdifferentiates and possesses properties consistent with a neuronal fate, possibly through a default mechanism. Attenuation of p19(INK4d) in Msx1 null mutant mandibular explants restores mitotic activity in the dental mesenchyme, demonstrating the functional significance of Msx1-mediated p19(INK4d) expression in regulating CNC cell proliferation during odontogenesis. Collectively, our results demonstrate that homeobox gene Msx1 regulates the fate of CNC cells by controlling the progression of the cell cycle. Genetic mutation of Msx1 may alternatively instruct the fate of these progenitor cells during craniofacial development.
神经嵴细胞是多能祖细胞,在胚胎发育过程中可分化为多种细胞和组织类型。在此,我们研究了牙齿发育过程中神经嵴细胞命运调控的分子和细胞机制。利用一种用于不可磨灭地标记神经嵴细胞后代的双组分遗传系统,我们在体内证明了Msx1基因敲除突变小鼠胚胎中神经嵴细胞来源的牙间充质存在缺陷。神经嵴细胞的缺陷是由于细胞周期蛋白依赖性激酶抑制剂p19(INK4d)活性升高以及细胞增殖的破坏。有趣的是,在没有Msx1的情况下,神经嵴细胞来源的牙间充质发生错误分化,并具有与神经元命运一致的特性,可能是通过一种默认机制。在Msx1基因敲除突变的下颌外植体中降低p19(INK4d)的水平可恢复牙间充质中的有丝分裂活性,这证明了Msx1介导的p19(INK4d)表达在牙齿发育过程中调节神经嵴细胞增殖的功能意义。总之,我们的结果表明,同源盒基因Msx1通过控制细胞周期进程来调节神经嵴细胞的命运。Msx1的基因突变也可能在颅面发育过程中指导这些祖细胞的命运。