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Expression Patterns and Subcellular Localization of Carbonic Anhydrases Are Developmentally Regulated during Tooth Formation

机译:碳酸酐酶的表达模式和亚细胞定位在牙齿形成过程中受到发育调节。

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摘要

Carbonic anhydrases (CAs) play fundamental roles in several physiological events, and emerging evidence points at their involvement in an array of disorders, including cancer. The expression of CAs in the different cells of teeth is unknown, let alone their expression patterns during odontogenesis. As a first step towards understanding the role of CAs during odontogenesis, we used immunohistochemistry, histochemistry and in situ hybridization to reveal hitherto unknown dynamic distribution patterns of eight CAs in mice. The most salient findings include expression of CAII/Car2 not only in maturation-stage ameloblasts (MA) but also in the papillary layer, dental papilla mesenchyme, odontoblasts and the epithelial rests of Malassez. We uncovered that the latter form lace-like networks around incisors; hitherto these have been known to occur only in molars. All CAs studied were produced by MA, however CAIV, CAIX and CARPXI proteins were distinctly enriched in the ruffled membrane of the ruffled MA but exhibited a homogeneous distribution in smooth-ended MA. While CAIV, CAVI/Car6, CAIX, CARPXI and CAXIV were produced by all odontoblasts, CAIII distribution displayed a striking asymmetry, in that it was virtually confined to odontoblasts in the root of molars and root analog of incisors. Remarkably, from initiation until near completion of odontogenesis and in several other tissues, CAXIII localized mainly in intracellular punctae/vesicles that we show to overlap with LAMP-1- and LAMP-2-positive vesicles, suggesting that CAXIII localizes within lysosomes. We showed that expression of CAs in developing teeth is not confined to cells involved in biomineralization, pointing at their participation in other biological events. Finally, we uncovered novel sites of CA expression, including the developing brain and eye, the olfactory epithelium, melanoblasts, tongue, notochord, nucleus pulposus and sebaceous glands. Our study provides important information for future single or multiple gene targeting strategies aiming at deciphering the function of CAs during odontogenesis.
机译:碳酸酐酶(CAs)在几种生理事件中起着基本作用,并且新兴证据表明它们参与了包括癌症在内的一系列疾病。 CAs在牙齿不同细胞中的表达是未知的,更不用说它们在牙生成过程中的表达模式。作为了解CA在牙齿形成过程中的作用的第一步,我们使用了免疫组织化学,组织化学和原位杂交技术,揭示了迄今为止八个未知的CA在小鼠体内的动态分布模式。最显着的发现包括CAII / Car2的表达不仅在成熟阶段的成釉细胞(MA)中,而且在乳头层,牙乳头间质,成牙本质细胞和Malassez的上皮组织中表达。我们发现后者在门牙周围形成花边状的网状结构。迄今为止,已知它们仅在臼齿中发生。所有研究的CA都是由MA产生的,但是CAIV,CAIX和CARPXI蛋白在皱纹MA的皱纹膜中明显富集,但在平滑末端的MA中表现出均匀的分布。虽然CAIV,CAVI / Car6,CAIX,CARPXI和CAXIV都是由成牙本质细胞产生的,但CAIII分布表现出惊人的不对称性,因为它实际上局限于臼齿根和切牙的根类似物中的成牙本质细胞。值得注意的是,从开始到接近完成牙本质发生以及在其他一些组织中,CAXIII主要位于细胞内点状/囊泡中,显示与LAMP-1和LAMP-2阳性囊泡重叠,表明CAXIII定位在溶酶体内。我们表明,CA在发育中的牙齿中的表达并不局限于参与生物矿化的细胞,这表明它们参与了其他生物事件。最后,我们发现了CA表达的新位点,包括发育中的大脑和眼睛,嗅觉上皮,黑素细胞,舌头,脊索,髓核和皮脂腺。我们的研究为未来的单基因或多基因靶向策略提供了重要信息,这些策略旨在了解牙本质发生过程中CA的功能。

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