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Multiple Calcium Export Exchangers and Pumps Are a Prominent Feature of Enamel Organ Cells

机译:多个钙出口交换器和泵是搪瓷器官细胞的突出特征

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摘要

Calcium export is a key function for the enamel organ during all stages of amelogenesis. Expression of a number of ATPase calcium transporting, plasma membrane genes (ATP2B1-4/PMCA1-4), solute carrier SLC8A genes (sodium/calcium exchanger or NCX1-3), and SLC24A gene family members (sodium/potassium/calcium exchanger or NCKX1-6) have been investigated in the developing enamel organ in earlier studies. This paper reviews the calcium export pathways that have been described and adds novel insights to the spatiotemporal expression patterns of PMCA1, PMCA4, and NCKX3 during amelogenesis. New data are presented to show the mRNA expression profiles for the four Atp2b1-4 gene family members (PMCA1-4) in secretory-stage and maturation-stage rat enamel organs. These data are compared to expression profiles for all Slc8a and Slc24a gene family members. PMCA1, PMCA4, and NCKX3 immunolocalization data is also presented. Gene expression profiles quantitated by real time PCR show that: (1) PMCA1, 3, and 4, and NCKX3 are most highly expressed during secretory-stage amelogenesis; (2) NCX1 and 3, and NCKX6 are expressed during secretory and maturation stages; (3) NCKX4 is most highly expressed during maturation-stage amelogenesis; and (4) expression levels of PMCA2, NCX2, NCKX1, NCKX2, and NCKX5 are negligible throughout amelogenesis. In the enamel organ PMCA1 localizes to the basolateral membrane of both secretory and maturation ameloblasts; PMCA4 expression is seen in the basolateral membrane of secretory and maturation ameloblasts, and also cells of the stratum intermedium and papillary layer; while NCKX3 expression is limited to Tomes' processes, and the apical membrane of maturation-stage ameloblasts. These new findings are discussed in the perspective of data already present in the literature, and highlight the multiplicity of calcium export systems in the enamel organ needed to regulate biomineralization.
机译:在牙釉质形成的所有阶段,钙出口是牙釉质器官的关键功能。表达许多ATPase钙转运蛋白,质膜基因(ATP2B1-4 / PMCA1-4),溶质载体SLC8A基因(钠/钙交换剂或NCX1-3)和SLC24A基因家族成员(钠/钾/钙交换剂或NCKX1-6)已在早期的搪瓷器官中进行了研究。本文回顾了已描述的钙出口途径,并为釉形成过程中PMCA1,PMCA4和NCKX3的时空表达模式提供了新的见解。提出了新的数据,以显示分泌期和成熟期大鼠牙釉质器官中四个Atp2b1-4基因家族成员(PMCA1-4)的mRNA表达谱。将这些数据与所有Slc8a和Slc24a基因家族成员的表达谱进行比较。还提供了PMCA1,PMCA4和NCKX3的免疫定位数据。通过实时PCR定量的基因表达谱显示:(1)PMCA1、3和4,以及NCKX3在分泌阶段的成釉过程中表达最高。 (2)在分泌和成熟阶段表达NCX1和3,以及NCKX6; (3)NCKX4在成熟阶段的成釉过程中表达最高。 (4)在整个成釉过程中,PMCA2,NCX2,NCKX1,NCKX2和NCKX5的表达水平可忽略不计。在釉质器官中,PMCA1定位于成分泌细胞和成熟成釉细胞的基底外侧膜上。 PMCA4表达见于分泌和成熟成釉细胞的基底外侧膜,以及中间层和乳头层的细胞。而NCKX3的表达仅限于Tomes的过程以及成熟阶段成釉细胞的顶膜。这些新发现是从文献中已有数据的角度进行讨论的,并突出了调节生物矿化所需的搪瓷器官中钙出口系统的多样性。

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