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GPR120: A bi-potential mediator to modulate the osteogenic and adipogenic differentiation of BMMSCs

Free fatty acids display diverse effects as signalling molecules through GPCRs in addition to their involvement in cellular metabolism. GPR120, a G protein-coupled receptor for long-chain unsaturated fatty acids, has been reported to mediate adipogenesis in lipid metabolism. However, whether GPR120...

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Autores principales: Gao, Bo, Huang, Qiang, Jie, Qiang, Lu, Wei-Guang, Wang, Long, Li, Xiao-Jie, Sun, Zhen, Hu, Ya-Qian, Chen, Li, Liu, Bao-Hua, Liu, Jian, Yang, Liu, Luo, Zhuo-Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4568495/
https://www.ncbi.nlm.nih.gov/pubmed/26365922
http://dx.doi.org/10.1038/srep14080
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author Gao, Bo
Huang, Qiang
Jie, Qiang
Lu, Wei-Guang
Wang, Long
Li, Xiao-Jie
Sun, Zhen
Hu, Ya-Qian
Chen, Li
Liu, Bao-Hua
Liu, Jian
Yang, Liu
Luo, Zhuo-Jing
author_facet Gao, Bo
Huang, Qiang
Jie, Qiang
Lu, Wei-Guang
Wang, Long
Li, Xiao-Jie
Sun, Zhen
Hu, Ya-Qian
Chen, Li
Liu, Bao-Hua
Liu, Jian
Yang, Liu
Luo, Zhuo-Jing
author_sort Gao, Bo
collection PubMed
description Free fatty acids display diverse effects as signalling molecules through GPCRs in addition to their involvement in cellular metabolism. GPR120, a G protein-coupled receptor for long-chain unsaturated fatty acids, has been reported to mediate adipogenesis in lipid metabolism. However, whether GPR120 also mediates osteogenesis and regulates BMMSCs remain unclear. In this study, we showed that GPR120 targeted the bi-potential differentiation of BMMSCs in a ligand dose-dependent manner. High concentrations of TUG-891 (a highly selective agonist of GPR120) promoted osteogenesis via the Ras-ERK1/2 cascade, while low concentrations elevated P38 and increased adipogenesis. The fine molecular regulation of GPR120 was implemented by up-regulating different integrin subunits (α1, α2 and β1; α5 and β3). The administration of high doses of TUG-891 rescued oestrogen-deficient bone loss in vivo, further supporting an essential role of GPR120 in bone metabolism. Our findings, for the first time, showed that GPR120-mediated cellular signalling determines the bi-potential differentiation of BMMSCs in a dose-dependent manner. Additionally, the induction of different integrin subunits was involved in the cytoplasmic regulation of a seesaw-like balance between ERK and p38 phosphorylation. These findings provide new hope for developing novel remedies to treat osteoporosis by adjusting the GPR120-mediated differentiation balance of BMMSCs.
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spelling pubmed-45684952015-09-23 GPR120: A bi-potential mediator to modulate the osteogenic and adipogenic differentiation of BMMSCs Gao, Bo Huang, Qiang Jie, Qiang Lu, Wei-Guang Wang, Long Li, Xiao-Jie Sun, Zhen Hu, Ya-Qian Chen, Li Liu, Bao-Hua Liu, Jian Yang, Liu Luo, Zhuo-Jing Sci Rep Article Free fatty acids display diverse effects as signalling molecules through GPCRs in addition to their involvement in cellular metabolism. GPR120, a G protein-coupled receptor for long-chain unsaturated fatty acids, has been reported to mediate adipogenesis in lipid metabolism. However, whether GPR120 also mediates osteogenesis and regulates BMMSCs remain unclear. In this study, we showed that GPR120 targeted the bi-potential differentiation of BMMSCs in a ligand dose-dependent manner. High concentrations of TUG-891 (a highly selective agonist of GPR120) promoted osteogenesis via the Ras-ERK1/2 cascade, while low concentrations elevated P38 and increased adipogenesis. The fine molecular regulation of GPR120 was implemented by up-regulating different integrin subunits (α1, α2 and β1; α5 and β3). The administration of high doses of TUG-891 rescued oestrogen-deficient bone loss in vivo, further supporting an essential role of GPR120 in bone metabolism. Our findings, for the first time, showed that GPR120-mediated cellular signalling determines the bi-potential differentiation of BMMSCs in a dose-dependent manner. Additionally, the induction of different integrin subunits was involved in the cytoplasmic regulation of a seesaw-like balance between ERK and p38 phosphorylation. These findings provide new hope for developing novel remedies to treat osteoporosis by adjusting the GPR120-mediated differentiation balance of BMMSCs. Nature Publishing Group 2015-09-14 /pmc/articles/PMC4568495/ /pubmed/26365922 http://dx.doi.org/10.1038/srep14080 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
Gao, Bo
Huang, Qiang
Jie, Qiang
Lu, Wei-Guang
Wang, Long
Li, Xiao-Jie
Sun, Zhen
Hu, Ya-Qian
Chen, Li
Liu, Bao-Hua
Liu, Jian
Yang, Liu
Luo, Zhuo-Jing
GPR120: A bi-potential mediator to modulate the osteogenic and adipogenic differentiation of BMMSCs
title GPR120: A bi-potential mediator to modulate the osteogenic and adipogenic differentiation of BMMSCs
title_full GPR120: A bi-potential mediator to modulate the osteogenic and adipogenic differentiation of BMMSCs
title_fullStr GPR120: A bi-potential mediator to modulate the osteogenic and adipogenic differentiation of BMMSCs
title_full_unstemmed GPR120: A bi-potential mediator to modulate the osteogenic and adipogenic differentiation of BMMSCs
title_short GPR120: A bi-potential mediator to modulate the osteogenic and adipogenic differentiation of BMMSCs
title_sort gpr120: a bi-potential mediator to modulate the osteogenic and adipogenic differentiation of bmmscs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4568495/
https://www.ncbi.nlm.nih.gov/pubmed/26365922
http://dx.doi.org/10.1038/srep14080
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