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Mice with Hypomorphic Expression of the Sodium-Phosphate Cotransporter PiT1/Slc20a1 Have an Unexpected Normal Bone Mineralization

The formation of hydroxyapatite crystals and their insertion into collagen fibrils of the matrix are essential steps for bone mineralization. As phosphate is a main structural component of apatite crystals, its uptake by skeletal cells is critical and must be controlled by specialized membrane prote...

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Autores principales: Bourgine, Annabelle, Pilet, Paul, Diouani, Sara, Sourice, Sophie, Lesoeur, Julie, Beck-Cormier, Sarah, Khoshniat, Solmaz, Weiss, Pierre, Friedlander, Gérard, Guicheux, Jérôme, Beck, Laurent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3681848/
https://www.ncbi.nlm.nih.gov/pubmed/23785462
http://dx.doi.org/10.1371/journal.pone.0065979
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author Bourgine, Annabelle
Pilet, Paul
Diouani, Sara
Sourice, Sophie
Lesoeur, Julie
Beck-Cormier, Sarah
Khoshniat, Solmaz
Weiss, Pierre
Friedlander, Gérard
Guicheux, Jérôme
Beck, Laurent
author_facet Bourgine, Annabelle
Pilet, Paul
Diouani, Sara
Sourice, Sophie
Lesoeur, Julie
Beck-Cormier, Sarah
Khoshniat, Solmaz
Weiss, Pierre
Friedlander, Gérard
Guicheux, Jérôme
Beck, Laurent
author_sort Bourgine, Annabelle
collection PubMed
description The formation of hydroxyapatite crystals and their insertion into collagen fibrils of the matrix are essential steps for bone mineralization. As phosphate is a main structural component of apatite crystals, its uptake by skeletal cells is critical and must be controlled by specialized membrane proteins. In mammals, in vitro studies have suggested that the high-affinity sodium-phosphate cotransporter PiT1 could play this role. In vivo, PiT1 expression was detected in hypertrophic chondrocytes of murine metatarsals, but its implication in bone physiology is not yet deciphered. As the complete deletion of PiT1 results in embryonic lethality at E12.5, we took advantage of a mouse model bearing two copies of PiT1 hypomorphic alleles to study the effect of a low expression of PiT1 on bone mineralization in vivo. In this report, we show that a 85% down-regulation of PiT1 in long bones resulted in a slight (6%) but significant reduction of femur length in young mice (15- and 30-day-old). However, despite a defect in alcian blue / alizarin red S and Von Kossa staining of hypomorphic 1-day-old mice, using X-rays micro-computed tomography, energy dispersive X-ray spectroscopy and histological staining techniques we could not detect differences between hypomorphic and wild-type mice of 15- to 300-days old. Interestingly, the expression of PiT2, the paralog of PiT1, was increased 2-fold in bone of PiT1 hypomorphic mice accounting for a normal phosphate uptake in mutant cells. Whether this may contribute to the absence of bone mineralization defects remains to be further deciphered.
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spelling pubmed-36818482013-06-19 Mice with Hypomorphic Expression of the Sodium-Phosphate Cotransporter PiT1/Slc20a1 Have an Unexpected Normal Bone Mineralization Bourgine, Annabelle Pilet, Paul Diouani, Sara Sourice, Sophie Lesoeur, Julie Beck-Cormier, Sarah Khoshniat, Solmaz Weiss, Pierre Friedlander, Gérard Guicheux, Jérôme Beck, Laurent PLoS One Research Article The formation of hydroxyapatite crystals and their insertion into collagen fibrils of the matrix are essential steps for bone mineralization. As phosphate is a main structural component of apatite crystals, its uptake by skeletal cells is critical and must be controlled by specialized membrane proteins. In mammals, in vitro studies have suggested that the high-affinity sodium-phosphate cotransporter PiT1 could play this role. In vivo, PiT1 expression was detected in hypertrophic chondrocytes of murine metatarsals, but its implication in bone physiology is not yet deciphered. As the complete deletion of PiT1 results in embryonic lethality at E12.5, we took advantage of a mouse model bearing two copies of PiT1 hypomorphic alleles to study the effect of a low expression of PiT1 on bone mineralization in vivo. In this report, we show that a 85% down-regulation of PiT1 in long bones resulted in a slight (6%) but significant reduction of femur length in young mice (15- and 30-day-old). However, despite a defect in alcian blue / alizarin red S and Von Kossa staining of hypomorphic 1-day-old mice, using X-rays micro-computed tomography, energy dispersive X-ray spectroscopy and histological staining techniques we could not detect differences between hypomorphic and wild-type mice of 15- to 300-days old. Interestingly, the expression of PiT2, the paralog of PiT1, was increased 2-fold in bone of PiT1 hypomorphic mice accounting for a normal phosphate uptake in mutant cells. Whether this may contribute to the absence of bone mineralization defects remains to be further deciphered. Public Library of Science 2013-06-13 /pmc/articles/PMC3681848/ /pubmed/23785462 http://dx.doi.org/10.1371/journal.pone.0065979 Text en © 2013 Bourgine et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bourgine, Annabelle
Pilet, Paul
Diouani, Sara
Sourice, Sophie
Lesoeur, Julie
Beck-Cormier, Sarah
Khoshniat, Solmaz
Weiss, Pierre
Friedlander, Gérard
Guicheux, Jérôme
Beck, Laurent
Mice with Hypomorphic Expression of the Sodium-Phosphate Cotransporter PiT1/Slc20a1 Have an Unexpected Normal Bone Mineralization
title Mice with Hypomorphic Expression of the Sodium-Phosphate Cotransporter PiT1/Slc20a1 Have an Unexpected Normal Bone Mineralization
title_full Mice with Hypomorphic Expression of the Sodium-Phosphate Cotransporter PiT1/Slc20a1 Have an Unexpected Normal Bone Mineralization
title_fullStr Mice with Hypomorphic Expression of the Sodium-Phosphate Cotransporter PiT1/Slc20a1 Have an Unexpected Normal Bone Mineralization
title_full_unstemmed Mice with Hypomorphic Expression of the Sodium-Phosphate Cotransporter PiT1/Slc20a1 Have an Unexpected Normal Bone Mineralization
title_short Mice with Hypomorphic Expression of the Sodium-Phosphate Cotransporter PiT1/Slc20a1 Have an Unexpected Normal Bone Mineralization
title_sort mice with hypomorphic expression of the sodium-phosphate cotransporter pit1/slc20a1 have an unexpected normal bone mineralization
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3681848/
https://www.ncbi.nlm.nih.gov/pubmed/23785462
http://dx.doi.org/10.1371/journal.pone.0065979
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