Lézot Frédéric, Thomas Bethan, Greene Scott R, Hotton Dominique, Yuan Zhi-An, Castaneda Beatriz, Bolaños Alba, Depew Michael, Sharpe Paul, Gibson Carolyn W, Berdal Ariane
INSERM, UMR 872, Paris, F-75006 France.
J Cell Physiol. 2008 Sep;216(3):688-97. doi: 10.1002/jcp.21448.
Tooth development is a complex process including successive stages of initiation, morphogenesis, and histogenesis. The role of the Dlx family of homeobox genes during the early stages of tooth development has been widely analyzed, while little data has been reported on their role in dental histogenesis. The expression pattern of Dlx2 has been described in the mouse incisor; an inverse linear relationship exists between the level of Dlx2 expression and enamel thickness, suggesting a role for Dlx2 in regulation of ameloblast differentiation and activity. In vitro data have revealed that DLX homeoproteins are able to regulate the expression of matrix proteins such as osteocalcin. The aim of the present study was to analyze the expression and function of Dlx genes during amelogenesis. Analysis of Dlx2/LacZ transgenic reporter mice, Dlx2 and Dlx1/Dlx2 null mutant mice, identified spatial variations in Dlx2 expression within molar tooth germs and suggests a role for Dlx2 in the organization of preameloblastic cells as a palisade in the labial region of molars. Later, during the secretory and maturation stages of amelogenesis, the expression pattern in molars was found to be similar to that described in incisors. The expression patterns of the other Dlx genes were examined in incisors and compared to Dlx2. Within the ameloblasts Dlx3 and Dlx6 are expressed constantly throughout presecretory, secretory, and maturation stages; during the secretory phase when Dlx2 is transitorily switched off, Dlx1 expression is upregulated. These data suggest a role for DLX homeoproteins in the morphological control of enamel. Sequence analysis of the amelogenin gene promoter revealed five potential responsive elements for DLX proteins that are shown to be functional for DLX2. Regulation of amelogenin in ameloblasts may be one method by which DLX homeoproteins may control enamel formation. To conclude, this study establishes supplementary functions of Dlx family members during tooth development: the participation in establishment of dental epithelial functional organization and the control of enamel morphogenesis via regulation of amelogenin expression.
牙齿发育是一个复杂的过程,包括起始、形态发生和组织发生的连续阶段。同源盒基因Dlx家族在牙齿发育早期阶段的作用已得到广泛分析,而关于它们在牙齿组织发生中的作用报道较少。Dlx2在小鼠切牙中的表达模式已有描述;Dlx2表达水平与釉质厚度之间存在负线性关系,提示Dlx2在调节成釉细胞分化和活性中发挥作用。体外数据显示,DLX同源结构域蛋白能够调节诸如骨钙素等基质蛋白的表达。本研究的目的是分析Dlx基因在釉质形成过程中的表达和功能。对Dlx2/LacZ转基因报告小鼠、Dlx2以及Dlx1/Dlx2基因敲除小鼠的分析,确定了磨牙牙胚中Dlx2表达的空间差异,并提示Dlx2在磨牙唇侧区域前成釉细胞排列成栅栏状的组织过程中发挥作用。随后,在釉质形成的分泌和成熟阶段,磨牙中的表达模式被发现与切牙中描述的相似。在切牙中检测了其他Dlx基因的表达模式,并与Dlx2进行比较。在成釉细胞中,Dlx3和Dlx6在分泌前期、分泌期和成熟期均持续表达;在分泌期,当Dlx2短暂关闭时,Dlx1表达上调。这些数据提示DLX同源结构域蛋白在釉质形态控制中发挥作用。釉原蛋白基因启动子的序列分析揭示了五个潜在的DLX蛋白反应元件,已证明它们对DLX2具有功能。DLX同源结构域蛋白控制釉质形成的一种方式可能是通过调节成釉细胞中的釉原蛋白。总之,本研究确定了Dlx家族成员在牙齿发育过程中的补充功能:参与牙齿上皮功能组织的建立以及通过调节釉原蛋白表达控制釉质形态发生。
J Cell Physiol. 2008-9
Dev Genes Evol. 2000-5
J Comp Neurol. 2005-2-28
Int J Dev Biol. 1996-12
Development. 2024-6-1
Dent J (Basel). 2022-11-6
Head Neck Pathol. 2023-3
Cells. 2022-7-16
Cancers (Basel). 2021-6-15
Cell Death Dis. 2017-12-14
Front Physiol. 2017-5-16
Mol Med Rep. 2017-5