Fons Romero J M, Star H, Lav R, Watkins S, Harrison M, Hovorakova M, Headon D, Tucker A S
1 Department of Craniofacial Development and Stem Cell Biology, King's College London, London, UK.
2 Hypodontia Clinic, Guy's and St Thomas' NHS Foundation Trust, London, UK.
J Dent Res. 2017 Oct;96(11):1290-1297. doi: 10.1177/0022034517725692. Epub 2017 Aug 16.
The Eda pathway ( Eda, Edar, Edaradd) plays an important role in tooth development, determining tooth number, crown shape, and enamel formation. Here we show that the Eda pathway also plays a key role in root development. Edar (the receptor) is expressed in Hertwig's epithelial root sheath (HERS) during root development, with mutant mice showing a high incidence of taurodontism: large pulp chambers lacking or showing delayed bifurcation or trifurcation of the roots. The mouse upper second molars in the Eda pathway mutants show the highest incidence of taurodontism, this enhanced susceptibility being matched in human patients with mutations in EDA-A1. These taurodont teeth form due to defects in the direction of extension of the HERS from the crown, associated with a more extensive area of proliferation of the neighboring root mesenchyme. In those teeth where the angle at which the HERS extends from the crown is very wide and therefore more vertical, the mutant HERSs fail to reach toward the center of the tooth in the normal furcation region, and taurodont teeth are created. The phenotype is variable, however, with milder changes in angle and proliferation leading to normal or delayed furcation. This is the first analysis of the role of Eda in the root, showing a direct role for this pathway during postnatal mouse development, and it suggests that changes in proliferation and angle of HERS may underlie taurodontism in a range of syndromes.
Eda信号通路(Eda、Edar、Edaradd)在牙齿发育过程中发挥着重要作用,决定着牙齿数量、牙冠形状和牙釉质形成。在此我们表明,Eda信号通路在牙根发育中也起着关键作用。Edar(受体)在牙根发育过程中表达于赫特维希上皮根鞘(HERS),突变小鼠表现出高发生率的牛牙症:牙髓腔大,牙根缺乏或出现延迟的分叉或三叉。Eda信号通路突变小鼠的上颌第二磨牙牛牙症发生率最高,EDA - A1突变的人类患者也有这种易感性增强的情况。这些牛牙症牙齿的形成是由于HERS从牙冠延伸的方向存在缺陷,这与相邻牙根间充质更广泛的增殖区域有关。在那些HERS从牙冠延伸的角度非常宽因而更垂直的牙齿中,突变的HERS无法在正常分叉区域伸向牙齿中心,从而形成牛牙症牙齿。然而,表型是可变的,角度和增殖的变化较轻微会导致正常或延迟的分叉。这是首次对Eda在牙根中的作用进行分析,显示了该信号通路在出生后小鼠发育过程中的直接作用,并且表明HERS增殖和角度的变化可能是一系列综合征中牛牙症的基础。