Kero Darko, Vukojevic Katarina, Stazic Petra, Sundov Danijela, Mardesic Brakus Snjezana, Saraga-Babic Mirna
a Laboratory for Early Human Development, Study Program of Dental Medicine, School of Medicine , University of Split , Split , Croatia.
b Laboratory for Early Human Development, Department of Anatomy, Histology and Embryology, School of Medicine , University of Split , Split , Croatia.
Organogenesis. 2017 Oct 2;13(4):141-155. doi: 10.1080/15476278.2017.1358337. Epub 2017 Sep 21.
Before the secretion of hard dental tissues, tooth germs undergo several distinctive stages of development (dental lamina, bud, cap and bell). Every stage is characterized by specific proliferation patterns, which is regulated by various morphogens, growth factors and homeodomain proteins. The role of MSX homeodomain proteins in odontogenesis is rather complex. Expression domains of genes encoding for murine Msx1/2 during development are observed in tissues containing highly proliferative progenitor cells. Arrest of tooth development in Msx knockout mice can be attributed to impaired proliferation of progenitor cells. In Msx1 knockout mice, these progenitor cells start to differentiate prematurely as they strongly express cyclin-dependent kinase inhibitor p19. p19 induces terminal differentiation of cells by blocking the cell cycle in mitogen-responsive G1 phase. Direct suppression of p19 by Msx1 protein is, therefore, important for maintaining proliferation of progenitor cells at levels required for the normal progression of tooth development. In this study, we examined the expression patterns of MSX1, MSX2 and p19 in human incisor tooth germs during the bud, cap and early bell stages of development. The distribution of expression domains of p19 throughout the investigated period indicates that p19 plays active role during human tooth development. Furthermore, comparison of expression domains of p19 with those of MSX1, MSX2 and proliferation markers Ki67, Cyclin A2 and pRb, indicates that MSX-mediated regulation of proliferation in human tooth germs might not be executed by the mechanism similar to one described in developing tooth germs of wild-type mouse.
在硬牙组织分泌之前,牙胚经历几个独特的发育阶段(牙板、蕾状期、帽状期和钟状期)。每个阶段都有特定的增殖模式,这由多种形态发生素、生长因子和同源结构域蛋白调控。MSX同源结构域蛋白在牙齿发育中的作用相当复杂。在发育过程中,编码小鼠Msx1/2的基因的表达域在含有高度增殖祖细胞的组织中被观察到。Msx基因敲除小鼠的牙齿发育停滞可归因于祖细胞增殖受损。在Msx1基因敲除小鼠中,这些祖细胞因强烈表达细胞周期蛋白依赖性激酶抑制剂p19而开始过早分化。p19通过在有丝分裂原反应性G1期阻断细胞周期来诱导细胞终末分化。因此,Msx1蛋白对p19的直接抑制对于将祖细胞增殖维持在牙齿发育正常进程所需的水平很重要。在本研究中,我们检测了人切牙牙胚在发育的蕾状期、帽状期和早期钟状期MSX1、MSX2和p19的表达模式。在整个研究期间p19表达域的分布表明p19在人类牙齿发育过程中发挥着积极作用。此外,将p19的表达域与MSX1、MSX2以及增殖标志物Ki67、细胞周期蛋白A2和磷酸化视网膜母细胞瘤蛋白(pRb)的表达域进行比较,表明MSX介导的人牙胚增殖调控可能不是通过与野生型小鼠发育中的牙胚所描述的机制类似的机制来执行的。