基因敲除
搪瓷漆
上皮
成釉细胞
牙囊
珐琅质器
细胞生物学
细胞生长
转染
生殖细胞
细胞角蛋白
细胞培养
化学
生物
胚胎干细胞
异位表达
细胞
分子生物学
下调和上调
基因表达
细胞凋亡
齿面
作者
Yuta Chiba,Tian Tian,Keigo Yoshizaki,Xiaohua Wang,Atsushi Yamada,Satoshi Fukumoto
标识
DOI:10.1177/00220345251368346
摘要
The coordination of dental cells is essential for tooth development. Various dental epithelial cell types are involved in tooth development, and each cell type plays a distinct role; however, the functional role of the outer enamel epithelium (OEE) remains unclear. We performed single-cell RNA-sequence (scRNA-seq) analysis of postnatal day (P) 7 incisors and embryonic day (E) 14 P1 molars of the mouse tooth germ to reveal the gene expression profile and role of OEE during tooth development. We identified keratin 15 ( Krt15 ) as a specific marker gene of OEE in the dental epithelium. Characterization of dental epithelial clusters using scRNA-seq suggested that Krt15 -negative cycling inner enamel epithelial (IEE) cells give rise to Krt15 -positive OEE cells, whereas the proliferative activity of dental epithelial cells decreases toward the development of OEE cells. We performed ex vivo organ cultures of the tooth germ to examine the effects of Krt15 knockdown on tooth development. Depletion of Krt15 in the tooth germ resulted in ectopic expression of Ki67 in OEE cells, leading to the development of an abnormal dental epithelial structure. We used the dental epithelial cell line CLDE to assess the molecular mechanisms regulated by Krt15 . Krt15-depleted CLDE cells showed abnormal cellular morphology and dysregulated gene expression of cytokeratin family members. Furthermore, Krt15 knockdown in CLDE cells upregulated the expression of cell proliferation marker genes, such as Mki67 . Furthermore, Krt15 -depleted CLDE cells exhibited activation of the p38 MAP kinase (MAPK) pathway and high proliferative activity. This suggested that Krt15 may control tooth germ size, inhibits p38 activation, and may act as a suppressor of dental epithelial cell proliferation. These findings provide new insights into the role of OEE in tooth development and contribute to a better understanding of the mechanisms underlying tooth morphogenesis.
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