Khaddam Mayssam, Huet Eric, Vallée Benoît, Bensidhoum Morad, Le Denmat Dominique, Filatova Anna, Jimenez-Rojo Lucia, Ribes Sandy, Lorenz Georg, Morawietz Maria, Rochefort Gael Y, Kiesow Andreas, Mitsiadis Thimios A, Poliard Anne, Petzold Matthias, Gabison Eric E, Menashi Suzanne, Chaussain Catherine
EA 2496, Pathologies, Imaging, and Biotherapies of the Tooth, Dental School Université Paris Descartes Sorbonne Paris Cité, France.
Laboratoire CRRET, Université Paris-Est, CNRS, Créteil, France.
Bone. 2014 Sep;66:256-66. doi: 10.1016/j.bone.2014.06.019. Epub 2014 Jun 24.
Tooth development is regulated by a series of reciprocal inductive signaling between the dental epithelium and mesenchyme, which culminates with the formation of dentin and enamel. EMMPRIN/CD147 is an Extracellular Matrix MetalloPRoteinase (MMP) INducer that mediates epithelial-mesenchymal interactions in cancer and other pathological processes and is expressed in developing teeth. Here we used EMMPRIN knockout (KO) mice to determine the functional role of EMMPRIN on dental tissue formation. We report a delay in enamel deposition and formation that is clearly distinguishable in the growing incisor and associated with a significant reduction of MMP-3 and MMP-20 expression in tooth germs of KO mice. Insufficient basement membrane degradation is evidenced by a persistent laminin immunostaining, resulting in a delay of both odontoblast and ameloblast differentiation. Consequently, enamel volume and thickness are decreased in adult mutant teeth but enamel maturation and tooth morphology are normal, as shown by micro-computed tomographic (micro-CT), nanoindentation, and scanning electron microscope analyses. In addition, the dentino-enamel junction appears as a rough calcified layer of approximately 10±5μm thick (mean±SD) in both molars and growing incisors of KO adult mice. These results indicate that EMMPRIN is involved in the epithelial-mesenchymal cross-talk during tooth development by regulating the expression of MMPs. The mild tooth phenotype observed in EMMPRIN KO mice suggests that the direct effect of EMMPRIN may be limited to a short time window, comprised between basement membrane degradation allowing direct cell contact and calcified matrix deposition.
牙齿发育受牙上皮和间充质之间一系列相互诱导信号的调控,最终形成牙本质和釉质。细胞外基质金属蛋白酶诱导因子(EMMPRIN)/CD147是一种细胞外基质金属蛋白酶(MMP)诱导剂,介导癌症及其他病理过程中的上皮-间充质相互作用,且在发育中的牙齿中表达。在此,我们利用EMMPRIN基因敲除(KO)小鼠来确定EMMPRIN在牙齿组织形成中的功能作用。我们报告称,釉质沉积和形成出现延迟,这在正在生长的切牙中清晰可辨,且与KO小鼠牙胚中MMP-3和MMP-20表达的显著降低有关。层粘连蛋白免疫染色持续存在,证明基底膜降解不足,导致成牙本质细胞和成釉细胞分化均延迟。因此,成年突变牙齿的釉质体积和厚度减小,但如微型计算机断层扫描(micro-CT)、纳米压痕和扫描电子显微镜分析所示,釉质成熟和牙齿形态正常。此外,在KO成年小鼠的磨牙和正在生长的切牙中,牙釉质界均呈现为一层约10±5μm厚(平均值±标准差)的粗糙钙化层。这些结果表明,EMMPRIN通过调节MMPs的表达参与牙齿发育过程中的上皮-间充质相互作用。在EMMPRIN KO小鼠中观察到的轻微牙齿表型表明,EMMPRIN的直接作用可能仅限于一个较短的时间窗口,即介于允许直接细胞接触的基底膜降解和钙化基质沉积之间的时间段。