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The cystic fibrosis transmembrane conductance regulator (CFTR) is expressed in maturation stage ameloblasts, odontoblasts and bone cells.

机译:囊性纤维化跨膜电导调节剂(CFTR)在成熟期成釉细胞,成牙本质细胞和骨细胞中表达。

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Patients with cystic fibrosis (CF) have mild defects in dental enamel. The gene mutated in these patients is CFTR, a Cl(-) channel involved in transepithelial salt and water transport and bicarbonate secretion. We tested the hypothesis that Cftr channels are present and operating in the plasma membranes of mouse ameloblasts. Tissue sections of young mouse jaws and fetal human jaws were immunostained with various anti-Cftr antibodies. Specificity of the antibodies was validated in Cftr-deficient murine and human tissues. Immunostaining for Cftr was obtained in the apical plasma membranes of mouse maturation ameloblasts of both incisor and molar tooth germs. A granular intracellular immunostaining of variable intensity was also noted in bone cells and odontoblasts. In Cftr-deficient mice the incisors were chalky white and eroded much faster than in wild type mice. Histologically, only maturation ameloblasts of incisors were structurally affected in Cftr-deficient mice. Some antibody species gave also a positive cytosolic staining in Cftr-deficient cells. Transcripts of Cftr were found in maturation ameloblasts, odontoblasts and bone cells. Similar data were obtained in forming human dentin and bone. We conclude that Cftr protein locates in the apical plasma membranes of mouse maturation ameloblasts. In mouse incisors Cftr is critical for completion of enamel mineralization and conceivably functions as a regulator of pH during rapid crystal growth. Osteopenia found in CF patients as well as in Cftr-deficient mice is likely associated with defective Cftr operating in bone cells.
机译:囊性纤维化(CF)患者的牙釉质存在轻度缺陷。这些患者中突变的基因是CFTR,这是一个Cl(-)通道,参与跨上皮盐和水的运输以及碳酸氢盐的分泌。我们测试了Cftr通道存在于小鼠成釉细胞质膜中并在其中运作的假设。用各种抗Cftr抗体对年轻小鼠下颌和胎儿人下颌的组织切片进行免疫染色。在缺乏Cftr的鼠和人组织中验证了抗体的特异性。在门牙和磨牙牙胚的小鼠成熟成釉细胞的顶质膜上获得了对Cftr的免疫染色。在骨细胞和成牙本质细胞中也发现了强度可变的颗粒状细胞内免疫染色。在缺乏Cftr的小鼠中,门牙呈白垩色,并且比野生型小鼠的侵蚀快得多。组织学上,只有成熟的门牙成釉细胞在缺乏Cftr的小鼠中受到结构性影响。一些抗体种类在缺乏Cftr的细胞中也呈阳性胞浆染色。在成熟的成釉细胞,成牙本质细胞和骨细胞中发现了Cftr的转录本。在形成人牙本质和骨骼方面获得了相似的数据。我们得出结论,Cftr蛋白位于小鼠成熟成釉细胞的顶质膜。在小鼠的门牙中,Cftr对于完成牙釉质矿化至关重要,可以想象它在快速晶体生长过程中起pH调节剂的作用。在CF患者以及缺乏Cftr的小鼠中发现的骨减少症可能与骨细胞中Cftr的缺陷有关。

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