Department of Prosthodontics, Peking University School and Hospital of Stomatology & National Center for Stomatology & National Clinical Research Center for Oral Diseases & National Engineering Research Center of Oral Biomaterials and Digital Medical Devices, Beijing, China.
Chinese Institute for Brain Research, Beijing, China.
Int J Oral Sci. 2024 Mar 13;16(1):25. doi: 10.1038/s41368-024-00288-x.
Human with bi-allelic WNT10A mutations and epithelial Wnt10a knockout mice present enlarged pulp chamber and apical displacement of the root furcation of multi-rooted teeth, known as taurodontism; thus, indicating the critical role of Wnt10a in tooth root morphogenesis. However, the endogenous mechanism by which epithelial Wnt10a regulates Hertwig's epithelial root sheath (HERS) cellular behaviors and contributes to root furcation patterning remains unclear. In this study, we found that HERS in the presumptive root furcating region failed to elongate at an appropriate horizontal level in K14-Cre;Wnt10a mice from post-natal day 0.5 (PN0.5) to PN4.5. EdU assays and immunofluorescent staining of cyclin D1 revealed significantly decreased proliferation activity of inner enamel epithelial (IEE) cells of HERS in K14-Cre;Wnt10a mice at PN2.5 and PN3.5. Immunofluorescent staining of E-Cadherin and acetyl-α-Tubulin demonstrated that the IEE cells of HERS tended to divide perpendicularly to the horizontal plane, which impaired the horizontal extension of HERS in the presumptive root furcating region of K14-Cre;Wnt10a mice. RNA-seq and immunofluorescence showed that the expressions of Jag1 and Notch2 were downregulated in IEE cells of HERS in K14-Cre;Wnt10a mice. Furthermore, after activation of Notch signaling in K14-Cre;Wnt10a molars by Notch2 adenovirus and kidney capsule grafts, the root furcation defect was partially rescued. Taken together, our study demonstrates that an epithelial Wnt10a-Notch signaling axis is crucial for modulating HERS cell proper proliferation and horizontal-oriented division during tooth root furcation morphogenesis.
人类的 WNT10A 基因存在双等位基因突变,以及上皮细胞 Wnt10a 基因敲除的小鼠,表现出多根牙的牙髓腔增大和根尖叉的位置上移,即尖牙型;这表明 Wnt10a 在牙齿根形态发生中起着关键作用。然而,上皮细胞 Wnt10a 调节 Hertwig 上皮根鞘 (HERS) 细胞行为并有助于根叉模式形成的内在机制尚不清楚。在这项研究中,我们发现,从出生后第 0.5 天(PN0.5)到第 4.5 天(PN4.5),K14-Cre;Wnt10a 小鼠的假定根叉区域的 HERS 未能在适当的水平上伸长。EdU 检测和细胞周期蛋白 D1 的免疫荧光染色显示,K14-Cre;Wnt10a 小鼠的 HERS 内釉上皮(IEE)细胞的增殖活性在 PN2.5 和 PN3.5 时显著降低。E-Cadherin 和乙酰-α-微管蛋白的免疫荧光染色表明,HERS 的 IEE 细胞倾向于垂直于水平平面分裂,这阻碍了 K14-Cre;Wnt10a 小鼠假定根叉区域的 HERS 的水平延伸。RNA-seq 和免疫荧光显示,K14-Cre;Wnt10a 小鼠的 HERS 的 IEE 细胞中 Jag1 和 Notch2 的表达下调。此外,通过 Notch2 腺病毒和肾包膜移植激活 K14-Cre;Wnt10a 磨牙中的 Notch 信号后,根叉缺陷部分得到了挽救。总之,我们的研究表明,上皮细胞 Wnt10a-Notch 信号轴对于调节牙齿根叉形态发生过程中 HERS 细胞的适当增殖和水平定向分裂至关重要。