Literature DB >> 26403673

Ameloblast Modulation and Transport of Cl⁻, Na⁺, and K⁺ during Amelogenesis.

A L J J Bronckers1, D Lyaruu2, R Jalali2, J F Medina3, B Zandieh-Doulabi2, P K DenBesten4.   

Abstract

Ameloblasts express transmembrane proteins for transport of mineral ions and regulation of pH in the enamel space. Two major transporters recently identified in ameloblasts are the Na(+)K(+)-dependent calcium transporter NCKX4 and the Na(+)-dependent HPO4 (2-) (Pi) cotransporter NaPi-2b. To regulate pH, ameloblasts express anion exchanger 2 (Ae2a,b), chloride channel Cftr, and amelogenins that can bind protons. Exposure to fluoride or null mutation of Cftr, Ae2a,b, or Amelx each results in formation of hypomineralized enamel. We hypothesized that enamel hypomineralization associated with disturbed pH regulation results from reduced ion transport by NCKX4 and NaPi-2b. This was tested by correlation analyses among the levels of Ca, Pi, Cl, Na, and K in forming enamel of mice with null mutation of Cftr, Ae2a,b, and Amelx, according to quantitative x-ray electron probe microanalysis. Immunohistochemistry, polymerase chain reaction analysis, and Western blotting confirmed the presence of apical NaPi-2b and Nckx4 in maturation-stage ameloblasts. In wild-type mice, K levels in enamel were negatively correlated with Ca and Cl but less negatively or even positively in fluorotic enamel. Na did not correlate with P or Ca in enamel of wild-type mice but showed strong positive correlation in fluorotic and nonfluorotic Ae2a,b- and Cftr-null enamel. In hypomineralizing enamel of all models tested, 1) Cl(-) was strongly reduced; 2) K(+) and Na(+) accumulated (Na(+) not in Amelx-null enamel); and 3) modulation was delayed or blocked. These results suggest that a Na(+)K(+)-dependent calcium transporter (likely NCKX4) and a Na(+)-dependent Pi transporter (potentially NaPi-2b) located in ruffle-ended ameloblasts operate in a coordinated way with the pH-regulating machinery to transport Ca(2+), Pi, and bicarbonate into maturation-stage enamel. Acidification and/or associated physicochemical/electrochemical changes in ion levels in enamel fluid near the apical ameloblast membrane may reduce the transport activity of mineral transporters, which results in hypomineralization. © International & American Associations for Dental Research 2015.

Entities:  

Keywords:  SLC24A4; SLC34A2; chloride-bicarbonate exchangers; dental enamel hypomaturation; electron probe microanalysis; fluorosis

Mesh:

Substances:

Year:  2015        PMID: 26403673      PMCID: PMC4681480          DOI: 10.1177/0022034515606900

Source DB:  PubMed          Journal:  J Dent Res        ISSN: 0022-0345            Impact factor:   6.116


  40 in total

1.  Barrier formation: potential molecular mechanism of enamel fluorosis.

Authors:  D M Lyaruu; J F Medina; S Sarvide; T J M Bervoets; V Everts; P Denbesten; C E Smith; A L J J Bronckers
Journal:  J Dent Res       Date:  2013-10-29       Impact factor: 6.116

2.  Comparison of Na-K-Cl cotransporters. NKCC1, NKCC2, and the HEK cell Na-L-Cl cotransporter.

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Authors:  R S Lacruz; C E Smith; I Kurtz; M J Hubbard; M L Paine
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4.  Npt2b deletion attenuates hyperphosphatemia associated with CKD.

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5.  Chloride distribution in human dental enamel as determined by electron probe microanalysis.

Authors:  R Söremark; P Gron
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8.  Amelogenins as potential buffers during secretory-stage amelogenesis.

Authors:  J Guo; D M Lyaruu; Y Takano; C W Gibson; P K DenBesten; A L J J Bronckers
Journal:  J Dent Res       Date:  2014-12-22       Impact factor: 6.116

Review 9.  Phosphate transporters of the SLC20 and SLC34 families.

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Journal:  Mol Aspects Med       Date:  2013 Apr-Jun

10.  STIM1 and SLC24A4 Are Critical for Enamel Maturation.

Authors:  S Wang; M Choi; A S Richardson; B M Reid; F Seymen; M Yildirim; E Tuna; K Gençay; J P Simmer; J C Hu
Journal:  J Dent Res       Date:  2014-03-12       Impact factor: 6.116

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  16 in total

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Review 2.  DENTAL ENAMEL FORMATION AND IMPLICATIONS FOR ORAL HEALTH AND DISEASE.

Authors:  Rodrigo S Lacruz; Stefan Habelitz; J Timothy Wright; Michael L Paine
Journal:  Physiol Rev       Date:  2017-07-01       Impact factor: 37.312

Review 3.  How pH is regulated during amelogenesis in dental fluorosis.

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Journal:  Exp Ther Med       Date:  2018-09-11       Impact factor: 2.447

Review 4.  Enamel: Molecular identity of its transepithelial ion transport system.

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Review 6.  Importance of bicarbonate transport in pH control during amelogenesis - need for functional studies.

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8.  Ezh2 knockout in mesenchymal cells causes enamel hyper-mineralization.

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9.  Reduced Protein Expression of the Na+/Ca2++K+-Exchanger (SLC24A4) in Apical Plasma Membranes of Maturation Ameloblasts of Fluorotic Mice.

Authors:  A L J J Bronckers; R Jalali; J Lytton
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10.  Three-Dimensional Culture of Ameloblast-Originated HAT-7 Cells for Functional Modeling of Defective Tooth Enamel Formation.

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