Duncan Henry F, Kobayashi Yoshifumi, Yamauchi Yukako, Quispe-Salcedo Angela, Chao Feng Zhi, Huang Jia, Partridge Nicola C, Nakatani Teruyo, D'Armiento Jeanine, Shimizu Emi
Division of Restorative Dentistry & Periodontology, Dublin Dental University Hospital, Trinity College Dublin, Dublin, Ireland.
Department of Oral Biology, Rutgers School of Dental Medicine, Newark, NJ, United States.
Front Cell Dev Biol. 2022 Apr 21;10:883266. doi: 10.3389/fcell.2022.883266. eCollection 2022.
Matrix-metalloproteinase-13 (MMP13) is important for bone formation and remodeling; however, its role in tooth development remains unknown. To investigate this, MMP13-knockout ( ) mice were used to analyze phenotypic changes in the dentin-pulp complex, mineralization-associated marker-expression, and mechanistic interactions. Immunohistochemistry demonstrated high MMP13-expression in pulp-tissue, ameloblasts, odontoblasts, and dentin in developing WT-molars, which reduced in adults, with human-DPC cultures demonstrating a >2000-fold increase in -expression during mineralization. Morphologically, molars displayed critical alterations in the dentin-phenotype, affecting dentin-tubule regularity, the odontoblast-palisade and predentin-definition with significantly reduced dentin volume (∼30% incisor; 13% molar), and enamel and dentin mineral-density. Reactionary-tertiary-dentin in response to injury was reduced at molar cusp-tips but with significantly more dystrophic pulpal mineralization in MMP13-null samples. Odontoblast differentiation-markers, nestin and DSP, reduced in expression after MMP13-loss , with reduced calcium deposition in MMP13-null DPC cultures. RNA-sequencing analysis of WT and pulp highlighted 5,020 transcripts to have significantly >2.0-fold change, with pathway-analysis indicating downregulation of the Wnt-signaling pathway, supported by reduced expression of the Wnt-responsive gene Axin2. Mmp13 interaction with Axin2 could be partly responsible for the loss of odontoblastic activity and alteration to the tooth phenotype and volume which is evident in this study. Overall, our novel findings indicate MMP13 as critical for tooth development and mineralization processes, highlighting mechanistic interaction with the Wnt-signaling pathway.
基质金属蛋白酶-13(MMP13)对骨骼形成和重塑很重要;然而,其在牙齿发育中的作用尚不清楚。为了研究这一点,使用MMP13基因敲除小鼠来分析牙髓-牙本质复合体中的表型变化、矿化相关标志物表达以及机制相互作用。免疫组织化学显示,在发育中的野生型磨牙的牙髓组织、成釉细胞、成牙本质细胞和牙本质中,MMP13表达较高,在成年后降低,而人牙髓-牙本质复合体培养显示矿化过程中其表达增加了2000倍以上。形态学上,MMP13基因敲除磨牙的牙本质表型出现严重改变,影响牙本质小管的规则性、成牙本质细胞栅栏和前期牙本质的清晰度,牙本质体积显著减少(切牙约减少30%;磨牙减少13%),釉质和牙本质矿密度降低。MMP13基因敲除磨牙尖的反应性-第三期牙本质对损伤的反应减少,但MMP13缺失样本中牙髓营养不良性矿化明显增多。MMP13缺失后,成牙本质细胞分化标志物巢蛋白和牙本质涎磷蛋白的表达降低,MMP13基因敲除的牙髓-牙本质复合体培养物中的钙沉积减少。对野生型和MMP13基因敲除牙髓的RNA测序分析突出显示,5020个转录本有显著大于2.0倍的变化,通路分析表明Wnt信号通路下调,Wnt反应基因Axin2的表达降低支持了这一点。本研究中明显的成牙本质细胞活性丧失、牙齿表型和体积改变可能部分归因于Mmp13与Axin2的相互作用。总体而言,我们的新发现表明MMP13对牙齿发育和矿化过程至关重要,突出了其与Wnt信号通路的机制相互作用。