Pandya Mirali, Gopinathan Gokul, Tillberg Connie, Wang Jun, Luan Xianghong, Diekwisch Thomas G H
Center for Craniofacial Research and Diagnosis, Texas A&M College of Dentistry, 3302 Gaston Avenue, Dallas, TX 75252, USA.
Department of Pediatrics, McGovern Medical School, The University of Texas Health Science Center at Houston, 6431 Fannin Street, Houston, TX 77030, USA.
J Dev Biol. 2022 Mar 1;10(1):14. doi: 10.3390/jdb10010014.
YAP and TAZ are essential transcriptional co-activators and downstream effectors of the Hippo pathway, regulating cell proliferation, organ growth, and tissue homeostasis. To ask how the Hippo pathway affects mineralized tissue homeostasis in a tissue that is highly reliant on a tight homeostatic control of mineralized deposition and resorption, we determined the effects of YAP/TAZ dysregulation on the periodontal tissues alveolar bone, root cementum, and periodontal ligament. Loss of YAP/TAZ was associated with a reduction of mineralized tissue density in cellular cementum and alveolar bone, a downregulation in collagen I, alkaline phosphatase, and RUNX2 gene expression, an increase in the resorption markers TRAP and cathepsin K, and elevated numbers of TRAP-stained osteoclasts. Cyclic strain applied to periodontal ligament cells resulted in YAP nuclear localization, an effect that was abolished after blocking YAP. The rescue of YAP signaling with the heparan sulfate proteoglycan agrin resulted in a return of the nuclear YAP signal. Illustrating the key role of YAP on mineralization gene expression, the YAP inhibition-related downregulation of mineralization-associated genes was reversed by the extracellular matrix YAP activator agrin. Application of the unopposed mouse molar model to transform the periodontal ligament into an unloaded state and facilitate the distal drift of teeth resulted in an overall increase in mineralization-associated gene expression, an effect that was 10-20% diminished in Wnt1Cre/YAP/TAZ mutant mice. The unloaded state of the unopposed molar model in Wnt1Cre/YAP/TAZ mutant mice also caused a significant three-fold increase in osteoclast numbers, a substantial increase in bone/cementum resorption, pronounced periodontal ligament hyalinization, and thickened periodontal fiber bundles. Together, these data demonstrated that YAP/TAZ signaling is essential for the microarchitectural integrity of the periodontium by regulating mineralization gene expression and preventing excessive resorption during bodily movement of the dentoalveolar complex.
YAP和TAZ是重要的转录共激活因子,也是Hippo信号通路的下游效应分子,调控细胞增殖、器官生长和组织稳态。为了探究Hippo信号通路如何在一个高度依赖矿化沉积和吸收的严格稳态控制的组织中影响矿化组织稳态,我们确定了YAP/TAZ失调对牙周组织(牙槽骨、牙根牙骨质和牙周韧带)的影响。YAP/TAZ缺失与细胞性牙骨质和牙槽骨中矿化组织密度降低、I型胶原、碱性磷酸酶和RUNX2基因表达下调、吸收标志物抗酒石酸酸性磷酸酶(TRAP)和组织蛋白酶K增加以及TRAP染色的破骨细胞数量增多有关。施加于牙周韧带细胞的周期性应变导致YAP核定位,在阻断YAP后这种效应消失。硫酸乙酰肝素蛋白聚糖聚集蛋白聚糖对YAP信号的挽救导致核YAP信号恢复。细胞外基质YAP激活剂聚集蛋白聚糖逆转了与YAP抑制相关的矿化相关基因的下调,说明了YAP对矿化基因表达的关键作用。应用单侧小鼠磨牙模型使牙周韧带处于无负荷状态并促进牙齿远中漂移,导致矿化相关基因表达总体增加,在Wnt1Cre/YAP/TAZ突变小鼠中这种效应降低了10%-20%。Wnt1Cre/YAP/TAZ突变小鼠单侧磨牙模型的无负荷状态还导致破骨细胞数量显著增加三倍、骨/牙骨质吸收大量增加、明显的牙周韧带玻璃样变以及牙周纤维束增粗。总之,这些数据表明,YAP/TAZ信号通过调节矿化基因表达和防止牙槽复合体身体运动期间的过度吸收,对牙周组织的微观结构完整性至关重要。