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Dental enamel cells express functional SOCE channels

Dental enamel formation requires large quantities of Ca(2+) yet the mechanisms mediating Ca(2+) dynamics in enamel cells are unclear. Store-operated Ca(2+) entry (SOCE) channels are important Ca(2+) influx mechanisms in many cells. SOCE involves release of Ca(2+) from intracellular pools followed by...

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Autores principales: Nurbaeva, Meerim K., Eckstein, Miriam, Concepcion, Axel R., Smith, Charles E., Srikanth, Sonal, Paine, Michael L., Gwack, Yousang, Hubbard, Michael J., Feske, Stefan, Lacruz, Rodrigo S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4626795/
https://www.ncbi.nlm.nih.gov/pubmed/26515404
http://dx.doi.org/10.1038/srep15803
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author Nurbaeva, Meerim K.
Eckstein, Miriam
Concepcion, Axel R.
Smith, Charles E.
Srikanth, Sonal
Paine, Michael L.
Gwack, Yousang
Hubbard, Michael J.
Feske, Stefan
Lacruz, Rodrigo S.
author_facet Nurbaeva, Meerim K.
Eckstein, Miriam
Concepcion, Axel R.
Smith, Charles E.
Srikanth, Sonal
Paine, Michael L.
Gwack, Yousang
Hubbard, Michael J.
Feske, Stefan
Lacruz, Rodrigo S.
author_sort Nurbaeva, Meerim K.
collection PubMed
description Dental enamel formation requires large quantities of Ca(2+) yet the mechanisms mediating Ca(2+) dynamics in enamel cells are unclear. Store-operated Ca(2+) entry (SOCE) channels are important Ca(2+) influx mechanisms in many cells. SOCE involves release of Ca(2+) from intracellular pools followed by Ca(2+) entry. The best-characterized SOCE channels are the Ca(2+) release-activated Ca(2+) (CRAC) channels. As patients with mutations in the CRAC channel genes STIM1 and ORAI1 show abnormal enamel mineralization, we hypothesized that CRAC channels might be an important Ca(2+) uptake mechanism in enamel cells. Investigating primary murine enamel cells, we found that key components of CRAC channels (ORAI1, ORAI2, ORAI3, STIM1, STIM2) were expressed and most abundant during the maturation stage of enamel development. Furthermore, inositol 1,4,5-trisphosphate receptor (IP(3)R) but not ryanodine receptor (RyR) expression was high in enamel cells suggesting that IP(3)Rs are the main ER Ca(2+) release mechanism. Passive depletion of ER Ca(2+) stores with thapsigargin resulted in a significant raise in [Ca(2+)](i) consistent with SOCE. In cells pre-treated with the CRAC channel blocker Synta-66 Ca(2+) entry was significantly inhibited. These data demonstrate that enamel cells have SOCE mediated by CRAC channels and implicate them as a mechanism for Ca(2+) uptake in enamel formation.
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spelling pubmed-46267952015-11-03 Dental enamel cells express functional SOCE channels Nurbaeva, Meerim K. Eckstein, Miriam Concepcion, Axel R. Smith, Charles E. Srikanth, Sonal Paine, Michael L. Gwack, Yousang Hubbard, Michael J. Feske, Stefan Lacruz, Rodrigo S. Sci Rep Article Dental enamel formation requires large quantities of Ca(2+) yet the mechanisms mediating Ca(2+) dynamics in enamel cells are unclear. Store-operated Ca(2+) entry (SOCE) channels are important Ca(2+) influx mechanisms in many cells. SOCE involves release of Ca(2+) from intracellular pools followed by Ca(2+) entry. The best-characterized SOCE channels are the Ca(2+) release-activated Ca(2+) (CRAC) channels. As patients with mutations in the CRAC channel genes STIM1 and ORAI1 show abnormal enamel mineralization, we hypothesized that CRAC channels might be an important Ca(2+) uptake mechanism in enamel cells. Investigating primary murine enamel cells, we found that key components of CRAC channels (ORAI1, ORAI2, ORAI3, STIM1, STIM2) were expressed and most abundant during the maturation stage of enamel development. Furthermore, inositol 1,4,5-trisphosphate receptor (IP(3)R) but not ryanodine receptor (RyR) expression was high in enamel cells suggesting that IP(3)Rs are the main ER Ca(2+) release mechanism. Passive depletion of ER Ca(2+) stores with thapsigargin resulted in a significant raise in [Ca(2+)](i) consistent with SOCE. In cells pre-treated with the CRAC channel blocker Synta-66 Ca(2+) entry was significantly inhibited. These data demonstrate that enamel cells have SOCE mediated by CRAC channels and implicate them as a mechanism for Ca(2+) uptake in enamel formation. Nature Publishing Group 2015-10-30 /pmc/articles/PMC4626795/ /pubmed/26515404 http://dx.doi.org/10.1038/srep15803 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Nurbaeva, Meerim K.
Eckstein, Miriam
Concepcion, Axel R.
Smith, Charles E.
Srikanth, Sonal
Paine, Michael L.
Gwack, Yousang
Hubbard, Michael J.
Feske, Stefan
Lacruz, Rodrigo S.
Dental enamel cells express functional SOCE channels
title Dental enamel cells express functional SOCE channels
title_full Dental enamel cells express functional SOCE channels
title_fullStr Dental enamel cells express functional SOCE channels
title_full_unstemmed Dental enamel cells express functional SOCE channels
title_short Dental enamel cells express functional SOCE channels
title_sort dental enamel cells express functional soce channels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4626795/
https://www.ncbi.nlm.nih.gov/pubmed/26515404
http://dx.doi.org/10.1038/srep15803
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