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Differential involvement of Wnt signaling in Bmp regulation of cancellous versus periosteal bone growth

Bone morphogenetic proteins (Bmp) are well-known to induce bone formation following chondrogenesis, but the direct role of Bmp signaling in the osteoblast lineage is not completely understood. We have recently shown that deletion of the receptor Bmpr1a in the osteoblast lineage with Dmp1-Cre reduces...

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Autores principales: He, Guangxu, Shi, Yu, Lim, Joohyun, Bellido, Teresita, Ni, Jiangdong, Long, Fanxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5460368/
https://www.ncbi.nlm.nih.gov/pubmed/28607813
http://dx.doi.org/10.1038/boneres.2017.16
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author He, Guangxu
Shi, Yu
Lim, Joohyun
Bellido, Teresita
Ni, Jiangdong
Long, Fanxin
author_facet He, Guangxu
Shi, Yu
Lim, Joohyun
Bellido, Teresita
Ni, Jiangdong
Long, Fanxin
author_sort He, Guangxu
collection PubMed
description Bone morphogenetic proteins (Bmp) are well-known to induce bone formation following chondrogenesis, but the direct role of Bmp signaling in the osteoblast lineage is not completely understood. We have recently shown that deletion of the receptor Bmpr1a in the osteoblast lineage with Dmp1-Cre reduces osteoblast activity in general but stimulates proliferation of preosteoblasts specifically in the cancellous bone region, resulting in diminished periosteal bone growth juxtaposed with excessive cancellous bone formation. Because expression of sclerostin (SOST), a secreted Wnt antagonist, is notably reduced in the Bmpr1a-deficient osteocytes, we have genetically tested the hypothesis that increased Wnt signaling might mediate the increase in cancellous bone formation in response to Bmpr1a deletion. Forced expression of human SOST from a Dmp1 promoter fragment partially rescues preosteoblast hyperproliferation and cancellous bone overgrowth in the Bmpr1a mutant mice, demonstrating functional interaction between Bmp and Wnt signaling in the cancellous bone compartment. To test whether increased Wnt signaling can compensate for the defect in periosteal growth caused by Bmpr1a deletion, we have generated compound mutants harboring a hyperactive mutation (A214V) in the Wnt receptor Lrp5. However, the mutant Lrp5 does not restore periosteal bone growth in the Bmpr1a-deficient mice. Thus, Bmp signaling restricts cancellous bone accrual partly through induction of SOST that limits preosteoblast proliferation, but promotes periosteal bone growth apparently independently of Wnt activation.
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spelling pubmed-54603682017-06-12 Differential involvement of Wnt signaling in Bmp regulation of cancellous versus periosteal bone growth He, Guangxu Shi, Yu Lim, Joohyun Bellido, Teresita Ni, Jiangdong Long, Fanxin Bone Res Article Bone morphogenetic proteins (Bmp) are well-known to induce bone formation following chondrogenesis, but the direct role of Bmp signaling in the osteoblast lineage is not completely understood. We have recently shown that deletion of the receptor Bmpr1a in the osteoblast lineage with Dmp1-Cre reduces osteoblast activity in general but stimulates proliferation of preosteoblasts specifically in the cancellous bone region, resulting in diminished periosteal bone growth juxtaposed with excessive cancellous bone formation. Because expression of sclerostin (SOST), a secreted Wnt antagonist, is notably reduced in the Bmpr1a-deficient osteocytes, we have genetically tested the hypothesis that increased Wnt signaling might mediate the increase in cancellous bone formation in response to Bmpr1a deletion. Forced expression of human SOST from a Dmp1 promoter fragment partially rescues preosteoblast hyperproliferation and cancellous bone overgrowth in the Bmpr1a mutant mice, demonstrating functional interaction between Bmp and Wnt signaling in the cancellous bone compartment. To test whether increased Wnt signaling can compensate for the defect in periosteal growth caused by Bmpr1a deletion, we have generated compound mutants harboring a hyperactive mutation (A214V) in the Wnt receptor Lrp5. However, the mutant Lrp5 does not restore periosteal bone growth in the Bmpr1a-deficient mice. Thus, Bmp signaling restricts cancellous bone accrual partly through induction of SOST that limits preosteoblast proliferation, but promotes periosteal bone growth apparently independently of Wnt activation. Nature Publishing Group 2017-06-06 /pmc/articles/PMC5460368/ /pubmed/28607813 http://dx.doi.org/10.1038/boneres.2017.16 Text en Copyright © 2017 The Author(s) 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
He, Guangxu
Shi, Yu
Lim, Joohyun
Bellido, Teresita
Ni, Jiangdong
Long, Fanxin
Differential involvement of Wnt signaling in Bmp regulation of cancellous versus periosteal bone growth
title Differential involvement of Wnt signaling in Bmp regulation of cancellous versus periosteal bone growth
title_full Differential involvement of Wnt signaling in Bmp regulation of cancellous versus periosteal bone growth
title_fullStr Differential involvement of Wnt signaling in Bmp regulation of cancellous versus periosteal bone growth
title_full_unstemmed Differential involvement of Wnt signaling in Bmp regulation of cancellous versus periosteal bone growth
title_short Differential involvement of Wnt signaling in Bmp regulation of cancellous versus periosteal bone growth
title_sort differential involvement of wnt signaling in bmp regulation of cancellous versus periosteal bone growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5460368/
https://www.ncbi.nlm.nih.gov/pubmed/28607813
http://dx.doi.org/10.1038/boneres.2017.16
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