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Enamel Defects Associated With Dentin Sialophosphoprotein Mutation in Mice

Dentin sialophosphoprotein (DSPP) is an extracellular matrix protein that is highly expressed in odontoblasts, but only transiently expressed in presecretory ameloblasts during tooth development. We previously generated a knockin mouse model expressing a mouse equivalent (DSPP, p.P19L) of human muta...

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Autores principales: Liang, Tian, Xu, Qian, Zhang, Hua, Wang, Suzhen, Diekwisch, Thomas G. H., Qin, Chunlin, Lu, Yongbo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8497714/
https://www.ncbi.nlm.nih.gov/pubmed/34630144
http://dx.doi.org/10.3389/fphys.2021.724098
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author Liang, Tian
Xu, Qian
Zhang, Hua
Wang, Suzhen
Diekwisch, Thomas G. H.
Qin, Chunlin
Lu, Yongbo
author_facet Liang, Tian
Xu, Qian
Zhang, Hua
Wang, Suzhen
Diekwisch, Thomas G. H.
Qin, Chunlin
Lu, Yongbo
author_sort Liang, Tian
collection PubMed
description Dentin sialophosphoprotein (DSPP) is an extracellular matrix protein that is highly expressed in odontoblasts, but only transiently expressed in presecretory ameloblasts during tooth development. We previously generated a knockin mouse model expressing a mouse equivalent (DSPP, p.P19L) of human mutant DSPP (p.P17L; referred to as “Dspp(P19L/+)”), and reported that Dspp(P19L/+) and Dspp(P19L/P19L) mice manifested a dentin phenotype resembling human dentinogenesis imperfecta (DGI). In this study, we analyzed pathogenic effects of mutant P19L-DSPP on enamel development in Dspp(P19L/+) and Dspp(P19L/P19L) mice. Micro-Computed Tomography (μCT) analyses of 7-week-old mouse mandibular incisors showed that Dspp(P19L/P19L) mice had significantly decreased enamel volume and/or enamel density at different stages of amelogenesis examined. Acid-etched scanning electron microscopy (SEM) analyses of mouse incisors demonstrated that, at the mid-late maturation stage of amelogenesis, the enamel of wild-type mice already had apparent decussating pattern of enamel rods, whereas only minute particulates were found in Dspp(P19L/+) mice, and no discernible structures in Dspp(P19L/P19L) mouse enamel. However, by the time that incisor enamel was about to erupt into oral cavity, distinct decussating enamel rods were evident in Dspp(P19L/+) mice, but only poorly-defined enamel rods were revealed in Dspp(P19L/P19L) mice. Moreover, μCT analyses of the mandibular first molars showed that Dspp(P19L/+) and Dspp(P19L/P19L) mice had a significant reduction in enamel volume and enamel density at the ages of 2, 3, and 24weeks after birth. Backscattered and acid-etched SEM analyses revealed that while 3-week-old Dspp(P19L/+) mice had similar pattern of enamel rods in the mandibular first molars as age-matched wild-type mice, no distinct enamel rods were observed in Dspp(P19L/P19L) mice. Yet neither Dspp(P19L/+) nor Dspp(P19L/P19L) mice showed well-defined enamel rods in the mandibular first molars by the age of 24weeks, as judged by backscattered and acid-etched SEM. In situ hybridization showed that DSPP mRNA level was markedly reduced in the presecretory ameloblasts, but immunohistochemistry revealed that DSP/DSPP immunostaining signals were much stronger within the presecretory ameloblasts in Dspp mutant mice than in wild-type mice. These results suggest that mutant P19L-DSPP protein caused developmental enamel defects in mice, which may be associated with intracellular retention of mutant DSPP in the presecretory ameloblasts.
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spelling pubmed-84977142021-10-09 Enamel Defects Associated With Dentin Sialophosphoprotein Mutation in Mice Liang, Tian Xu, Qian Zhang, Hua Wang, Suzhen Diekwisch, Thomas G. H. Qin, Chunlin Lu, Yongbo Front Physiol Physiology Dentin sialophosphoprotein (DSPP) is an extracellular matrix protein that is highly expressed in odontoblasts, but only transiently expressed in presecretory ameloblasts during tooth development. We previously generated a knockin mouse model expressing a mouse equivalent (DSPP, p.P19L) of human mutant DSPP (p.P17L; referred to as “Dspp(P19L/+)”), and reported that Dspp(P19L/+) and Dspp(P19L/P19L) mice manifested a dentin phenotype resembling human dentinogenesis imperfecta (DGI). In this study, we analyzed pathogenic effects of mutant P19L-DSPP on enamel development in Dspp(P19L/+) and Dspp(P19L/P19L) mice. Micro-Computed Tomography (μCT) analyses of 7-week-old mouse mandibular incisors showed that Dspp(P19L/P19L) mice had significantly decreased enamel volume and/or enamel density at different stages of amelogenesis examined. Acid-etched scanning electron microscopy (SEM) analyses of mouse incisors demonstrated that, at the mid-late maturation stage of amelogenesis, the enamel of wild-type mice already had apparent decussating pattern of enamel rods, whereas only minute particulates were found in Dspp(P19L/+) mice, and no discernible structures in Dspp(P19L/P19L) mouse enamel. However, by the time that incisor enamel was about to erupt into oral cavity, distinct decussating enamel rods were evident in Dspp(P19L/+) mice, but only poorly-defined enamel rods were revealed in Dspp(P19L/P19L) mice. Moreover, μCT analyses of the mandibular first molars showed that Dspp(P19L/+) and Dspp(P19L/P19L) mice had a significant reduction in enamel volume and enamel density at the ages of 2, 3, and 24weeks after birth. Backscattered and acid-etched SEM analyses revealed that while 3-week-old Dspp(P19L/+) mice had similar pattern of enamel rods in the mandibular first molars as age-matched wild-type mice, no distinct enamel rods were observed in Dspp(P19L/P19L) mice. Yet neither Dspp(P19L/+) nor Dspp(P19L/P19L) mice showed well-defined enamel rods in the mandibular first molars by the age of 24weeks, as judged by backscattered and acid-etched SEM. In situ hybridization showed that DSPP mRNA level was markedly reduced in the presecretory ameloblasts, but immunohistochemistry revealed that DSP/DSPP immunostaining signals were much stronger within the presecretory ameloblasts in Dspp mutant mice than in wild-type mice. These results suggest that mutant P19L-DSPP protein caused developmental enamel defects in mice, which may be associated with intracellular retention of mutant DSPP in the presecretory ameloblasts. Frontiers Media S.A. 2021-09-24 /pmc/articles/PMC8497714/ /pubmed/34630144 http://dx.doi.org/10.3389/fphys.2021.724098 Text en Copyright © 2021 Liang, Xu, Zhang, Wang, Diekwisch, Qin and Lu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Liang, Tian
Xu, Qian
Zhang, Hua
Wang, Suzhen
Diekwisch, Thomas G. H.
Qin, Chunlin
Lu, Yongbo
Enamel Defects Associated With Dentin Sialophosphoprotein Mutation in Mice
title Enamel Defects Associated With Dentin Sialophosphoprotein Mutation in Mice
title_full Enamel Defects Associated With Dentin Sialophosphoprotein Mutation in Mice
title_fullStr Enamel Defects Associated With Dentin Sialophosphoprotein Mutation in Mice
title_full_unstemmed Enamel Defects Associated With Dentin Sialophosphoprotein Mutation in Mice
title_short Enamel Defects Associated With Dentin Sialophosphoprotein Mutation in Mice
title_sort enamel defects associated with dentin sialophosphoprotein mutation in mice
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8497714/
https://www.ncbi.nlm.nih.gov/pubmed/34630144
http://dx.doi.org/10.3389/fphys.2021.724098
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