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Smad4 controls bone homeostasis through regulation of osteoblast/osteocyte viability

Regulation of osteoblast and osteocyte viability is essential for bone homeostasis. Smad4, a major transducer of bone morphogenetic protein and transforming growth factor-β signaling pathways, regulates apoptosis in various cell types through a mitochondrial pathway. However, it remains poorly under...

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Autores principales: Moon, Young Jae, Yun, Chi-Young, Choi, Hwajung, Ka, Sun-O, Kim, Jung Ryul, Park, Byung-Hyun, Cho, Eui-Sic
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5050296/
https://www.ncbi.nlm.nih.gov/pubmed/27585718
http://dx.doi.org/10.1038/emm.2016.75
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author Moon, Young Jae
Yun, Chi-Young
Choi, Hwajung
Ka, Sun-O
Kim, Jung Ryul
Park, Byung-Hyun
Cho, Eui-Sic
author_facet Moon, Young Jae
Yun, Chi-Young
Choi, Hwajung
Ka, Sun-O
Kim, Jung Ryul
Park, Byung-Hyun
Cho, Eui-Sic
author_sort Moon, Young Jae
collection PubMed
description Regulation of osteoblast and osteocyte viability is essential for bone homeostasis. Smad4, a major transducer of bone morphogenetic protein and transforming growth factor-β signaling pathways, regulates apoptosis in various cell types through a mitochondrial pathway. However, it remains poorly understood whether Smad4 is necessary for the regulation of osteoblast and osteocyte viability. In this study, we analyzed Smad4Δ(Os) mice, in which Smad4 was subjected to tissue-specific disruption under the control of the 2.3-kb Col1a1 promoter, to understand the functional significance of Smad4 in regulating osteoblast/osteocyte viability during bone formation and remodeling. Smad4Δ(Os) mice showed a significant increase in osteoblast number and osteocyte density in the trabecular and cortical regions of the femur, whereas osteoclast activity was significantly decreased. The proliferation of osteoblasts/osteocytes did not alter, as shown by measuring 5′-bromo-2′deoxyuridine incorporation. By contrast, the percentage of TUNEL-positive cells decreased, together with a decrease in the Bax/Bcl-2 ratio and in the proteolytic cleavage of caspase 3, in Smad4Δ(Os) mice. Apoptosis in isolated calvaria cells from Smad4Δ(Os) mice decreased after differentiation, which was consistent with the results of the TUNEL assay and western blotting in Smad4Δ(Os) mice. Conversely, osteoblast cells overexpressing Smad4 showed increased apoptosis. In an apoptosis induction model of Smad4Δ(Os) mice, osteoblasts/osteocytes were more resistant to apoptosis than were control cells, and, consequently, bone remodeling was attenuated. These findings indicate that Smad4 has a significant role in regulating osteoblast/osteocyte viability and therefore controls bone homeostasis.
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spelling pubmed-50502962016-10-07 Smad4 controls bone homeostasis through regulation of osteoblast/osteocyte viability Moon, Young Jae Yun, Chi-Young Choi, Hwajung Ka, Sun-O Kim, Jung Ryul Park, Byung-Hyun Cho, Eui-Sic Exp Mol Med Original Article Regulation of osteoblast and osteocyte viability is essential for bone homeostasis. Smad4, a major transducer of bone morphogenetic protein and transforming growth factor-β signaling pathways, regulates apoptosis in various cell types through a mitochondrial pathway. However, it remains poorly understood whether Smad4 is necessary for the regulation of osteoblast and osteocyte viability. In this study, we analyzed Smad4Δ(Os) mice, in which Smad4 was subjected to tissue-specific disruption under the control of the 2.3-kb Col1a1 promoter, to understand the functional significance of Smad4 in regulating osteoblast/osteocyte viability during bone formation and remodeling. Smad4Δ(Os) mice showed a significant increase in osteoblast number and osteocyte density in the trabecular and cortical regions of the femur, whereas osteoclast activity was significantly decreased. The proliferation of osteoblasts/osteocytes did not alter, as shown by measuring 5′-bromo-2′deoxyuridine incorporation. By contrast, the percentage of TUNEL-positive cells decreased, together with a decrease in the Bax/Bcl-2 ratio and in the proteolytic cleavage of caspase 3, in Smad4Δ(Os) mice. Apoptosis in isolated calvaria cells from Smad4Δ(Os) mice decreased after differentiation, which was consistent with the results of the TUNEL assay and western blotting in Smad4Δ(Os) mice. Conversely, osteoblast cells overexpressing Smad4 showed increased apoptosis. In an apoptosis induction model of Smad4Δ(Os) mice, osteoblasts/osteocytes were more resistant to apoptosis than were control cells, and, consequently, bone remodeling was attenuated. These findings indicate that Smad4 has a significant role in regulating osteoblast/osteocyte viability and therefore controls bone homeostasis. Nature Publishing Group 2016-09 2016-09-02 /pmc/articles/PMC5050296/ /pubmed/27585718 http://dx.doi.org/10.1038/emm.2016.75 Text en Copyright © 2016 KSBMB. http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 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-nc-nd/4.0/
spellingShingle Original Article
Moon, Young Jae
Yun, Chi-Young
Choi, Hwajung
Ka, Sun-O
Kim, Jung Ryul
Park, Byung-Hyun
Cho, Eui-Sic
Smad4 controls bone homeostasis through regulation of osteoblast/osteocyte viability
title Smad4 controls bone homeostasis through regulation of osteoblast/osteocyte viability
title_full Smad4 controls bone homeostasis through regulation of osteoblast/osteocyte viability
title_fullStr Smad4 controls bone homeostasis through regulation of osteoblast/osteocyte viability
title_full_unstemmed Smad4 controls bone homeostasis through regulation of osteoblast/osteocyte viability
title_short Smad4 controls bone homeostasis through regulation of osteoblast/osteocyte viability
title_sort smad4 controls bone homeostasis through regulation of osteoblast/osteocyte viability
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5050296/
https://www.ncbi.nlm.nih.gov/pubmed/27585718
http://dx.doi.org/10.1038/emm.2016.75
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