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A Critical Role of TRPM7 As an Ion Channel Protein in Mediating the Mineralization of the Craniofacial Hard Tissues

机译:TRPM7作为离子通道蛋白在介导颅面硬组织矿化中的关键作用

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Magnesium ion (Mg~(2+)) is the fourth most common cation in the human body, and has a crucial role in many physiological functions. Mg~(2+)homeostasis is an important contributor to bone development, however, its roles in the development of dental mineralized tissues have not yet been well known. We identified that transient receptor potential cation channel, subfamily M, member 7 (TRPM7), was significantly upregulated in the mature ameloblasts as compared to other ameloblasts through our whole transcript microarray analyses of the ameloblasts. TRPM7, an ion channel for divalent metal cations with an intrinsic serine/threonine protein kinase activity, has been characterized as a key regulator of whole body Mg~(2+)homeostasis. Semi-quantitative PCR and immunostaining for TRMP7 confirmed its upregulation during the maturation stage of enamel formation, at which ameloblasts direct rapid mineralization of the enamel matrix. The significantly hypomineralized craniofacial structures, including incisors, molars, and cranial bones were demonstrated by microCT analysis, von Kossa and trichrome staining in Trpm7 ~(Δkinase∕+)mice. A previously generated heterozygous mouse model with the deletion of the TRPM7 kinase domain. Interestingly, the skeletal phenotype of Trpm7 ~(Δkinase∕+)mice resembled those found in the tissue-nonspecific alkaline phosphatase ( Alpl ) KO mice, thus we further examined whether ALPL protein content and alkaline phosphatase (ALPase) activity in ameloblasts, odontoblasts and osteoblasts were affected in those mice. While ALPL protein in Trpm7 ~(Δkinase∕+)mice remained at the similar level as that in wt mice, ALPase activities in the Trpm7 ~(Δkinase∕+)mice were almost nonexistent. Supplemented magnesium successfully rescued the activities of ALPase in ameloblasts, odontoblasts and osteoblasts of Trpm7 ~(Δkinase∕+)mice. These results suggested that TRPM7 is essential for mineralization of enamel as well as dentin and bone by providing sufficient Mg~(2+)for the ALPL activity, underlining the key importance of ALPL for biomineralization.
机译:镁离子(Mg〜(2+))是人体中第四大最常见的阳离子,在许多生理功能中起着至关重要的作用。 Mg〜(2+)动态平衡是骨骼发育的重要因素,但是,其在牙齿矿化组织发育中的作用尚未广为人知。我们通过对成釉细胞的整个转录本微阵列分析发现,与其他成釉细胞相比,成熟成釉细胞中瞬时受体潜在阳离子通道M亚家族M成员7(TRPM7)明显上调。 TRPM7是具有内在的丝氨酸/苏氨酸蛋白激酶活性的二价金属阳离子的离子通道,已被表征为全身Mg〜(2+)动态平衡的关键调节剂。对TRMP7的半定量PCR和免疫染色证实了其在釉质形成成熟阶段的上调,成釉细胞直接引导釉质基质快速矿化。在Trpm7〜(Δkinase∕ +)小鼠中通过microCT分析,von Kossa和三色染色证实了明显的矿化的颅面结构,包括切牙,臼齿和颅骨。先前生成的具有TRPM7激酶结构域缺失的杂合小鼠模型。有趣的是,Trpm7〜(Δkinase∕ +)小鼠的骨骼表型与在组织非特异性碱性磷酸酶(Alpl)KO小鼠中发现的小鼠相似,因此我们进一步检查了成釉细胞,成牙本质细胞和成骨细胞中ALPL蛋白的含量和碱性磷酸酶(ALPase)的活性。在那些小鼠中成骨细胞受到影响。 Trpm7〜(Δkinase∕ +)小鼠的ALPL蛋白水平与wt小鼠相似,而Trpm7〜(Δkinase∕ +)小鼠的ALPase活性几乎不存在。补充镁成功地拯救了Trpm7〜(Δkinase∕ +)小鼠成釉细胞,成牙本质细胞和成骨细胞中ALPase的活性。这些结果表明,TRPM7通过为ALPL活性提供足够的Mg〜(2+),对于牙釉质以及牙本质和骨骼的矿化至关重要,这突出了ALPL对于生物矿化的关键重要性。

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