Department of Oral Biochemistry, Institute of Odontology, Sahlgrenska Academy at the University of Gothenburg, SE-40530 Göteborg, Sweden.
Department of Oral Biology, Faculty of Dentistry, Minia University, Minia 61511, Egypt.
Int J Mol Sci. 2022 May 29;23(11):6095. doi: 10.3390/ijms23116095.
BMP signaling is crucial for differentiation of secretory ameloblasts, the cells that secrete enamel matrix. However, whether BMP signaling is required for differentiation of maturation-stage ameloblasts (MA), which are instrumental for enamel maturation into hard tissue, is hitherto unknown. To address this, we used an in vivo genetic approach which revealed that combined deactivation of the and genes in the murine dental epithelium causes development of dysmorphic and dysfunctional MA. These fail to exhibit a ruffled apical plasma membrane and to reabsorb enamel matrix proteins, leading to enamel defects mimicking hypomaturation amelogenesis imperfecta. Furthermore, subsets of mutant MA underwent pathological single or collective cell migration away from the ameloblast layer, forming cysts and/or exuberant tumor-like and gland-like structures. Massive apoptosis in the adjacent stratum intermedium and the abnormal cell-cell contacts and cell-matrix adhesion of MA may contribute to this aberrant behavior. The mutant MA also exhibited severely diminished tissue non-specific alkaline phosphatase activity, revealing that this enzyme's activity in MA crucially depends on BMP2 and BMP4 inputs. Our findings show that combined BMP2 and BMP4 signaling is crucial for survival of the stratum intermedium and for proper development and function of MA to ensure normal enamel maturation.
BMP 信号对于分泌性成釉细胞(分泌釉基质的细胞)的分化至关重要。然而,BMP 信号是否对于成熟阶段成釉细胞(MA)的分化是必需的,目前尚不清楚。为了解决这个问题,我们使用了一种体内遗传方法,该方法表明,在小鼠牙上皮中同时失活 和 基因会导致形态异常和功能障碍的 MA 发育。这些 MA 无法表现出皱褶的顶端质膜,并且无法再吸收釉基质蛋白,导致类似于低成熟型牙釉质不全的釉质缺陷。此外,突变 MA 的亚群经历了病理性的单个或集体细胞迁移,离开成釉细胞层,形成囊肿和/或过度的肿瘤样和腺体样结构。相邻中间层的大量细胞凋亡以及 MA 的异常细胞-细胞接触和细胞-基质粘附可能导致这种异常行为。突变 MA 还表现出组织非特异性碱性磷酸酶活性严重降低,表明该酶在 MA 中的活性严重依赖于 BMP2 和 BMP4 的输入。我们的研究结果表明,BMP2 和 BMP4 信号的联合对于中间层的存活以及 MA 的正常发育和功能至关重要,以确保正常的釉质成熟。