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GAS5 protects against osteoporosis by targeting UPF1/SMAD7 axis in osteoblast differentiation

Osteoporosis is a common systemic skeletal disorder resulting in bone fragility and increased fracture risk. It is still necessary to explore its detailed mechanisms and identify novel targets for the treatment of osteoporosis. Previously, we found that a lncRNA named GAS5 in human could negatively...

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Autores principales: Li, Ming, Xie, Zhongyu, Li, Jinteng, Lin, Jiajie, Zheng, Guan, Liu, Wenjie, Tang, Su'an, Cen, Shuizhong, Ye, Guiwen, Li, Zhaofeng, Yu, Wenhui, Wang, Peng, Wu, Yanfeng, Shen, Huiyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7609060/
https://www.ncbi.nlm.nih.gov/pubmed/33006314
http://dx.doi.org/10.7554/eLife.59079
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author Li, Ming
Xie, Zhongyu
Li, Jinteng
Lin, Jiajie
Zheng, Guan
Liu, Wenjie
Tang, Su'an
Cen, Shuizhong
Ye, Guiwen
Li, Zhaofeng
Yu, Wenhui
Wang, Peng
Wu, Yanfeng
Shen, Huiyong
author_facet Li, Ming
Xie, Zhongyu
Li, Jinteng
Lin, Jiajie
Zheng, Guan
Liu, Wenjie
Tang, Su'an
Cen, Shuizhong
Ye, Guiwen
Li, Zhaofeng
Yu, Wenhui
Wang, Peng
Wu, Yanfeng
Shen, Huiyong
author_sort Li, Ming
collection PubMed
description Osteoporosis is a common systemic skeletal disorder resulting in bone fragility and increased fracture risk. It is still necessary to explore its detailed mechanisms and identify novel targets for the treatment of osteoporosis. Previously, we found that a lncRNA named GAS5 in human could negatively regulate the lipoblast/adipocyte differentiation. However, it is still unclear whether GAS5 affects osteoblast differentiation and whether GAS5 is associated with osteoporosis. Our current research found that GAS5 was decreased in the bones and BMSCs, a major origin of osteoblast, of osteoporosis patients. Mechanistically, GAS5 promotes the osteoblast differentiation by interacting with UPF1 to degrade SMAD7 mRNA. Moreover, a decreased bone mass and impaired bone repair ability were observed in Gas5 heterozygous mice, manifesting in osteoporosis. The systemic supplement of Gas5-overexpressing adenoviruses significantly ameliorated bone loss in an osteoporosis mouse model. In conclusion, GAS5 promotes osteoblast differentiation by targeting the UPF1/SMAD7 axis and protects against osteoporosis.
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spelling pubmed-76090602020-11-05 GAS5 protects against osteoporosis by targeting UPF1/SMAD7 axis in osteoblast differentiation Li, Ming Xie, Zhongyu Li, Jinteng Lin, Jiajie Zheng, Guan Liu, Wenjie Tang, Su'an Cen, Shuizhong Ye, Guiwen Li, Zhaofeng Yu, Wenhui Wang, Peng Wu, Yanfeng Shen, Huiyong eLife Cell Biology Osteoporosis is a common systemic skeletal disorder resulting in bone fragility and increased fracture risk. It is still necessary to explore its detailed mechanisms and identify novel targets for the treatment of osteoporosis. Previously, we found that a lncRNA named GAS5 in human could negatively regulate the lipoblast/adipocyte differentiation. However, it is still unclear whether GAS5 affects osteoblast differentiation and whether GAS5 is associated with osteoporosis. Our current research found that GAS5 was decreased in the bones and BMSCs, a major origin of osteoblast, of osteoporosis patients. Mechanistically, GAS5 promotes the osteoblast differentiation by interacting with UPF1 to degrade SMAD7 mRNA. Moreover, a decreased bone mass and impaired bone repair ability were observed in Gas5 heterozygous mice, manifesting in osteoporosis. The systemic supplement of Gas5-overexpressing adenoviruses significantly ameliorated bone loss in an osteoporosis mouse model. In conclusion, GAS5 promotes osteoblast differentiation by targeting the UPF1/SMAD7 axis and protects against osteoporosis. eLife Sciences Publications, Ltd 2020-10-02 /pmc/articles/PMC7609060/ /pubmed/33006314 http://dx.doi.org/10.7554/eLife.59079 Text en © 2020, Li et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Li, Ming
Xie, Zhongyu
Li, Jinteng
Lin, Jiajie
Zheng, Guan
Liu, Wenjie
Tang, Su'an
Cen, Shuizhong
Ye, Guiwen
Li, Zhaofeng
Yu, Wenhui
Wang, Peng
Wu, Yanfeng
Shen, Huiyong
GAS5 protects against osteoporosis by targeting UPF1/SMAD7 axis in osteoblast differentiation
title GAS5 protects against osteoporosis by targeting UPF1/SMAD7 axis in osteoblast differentiation
title_full GAS5 protects against osteoporosis by targeting UPF1/SMAD7 axis in osteoblast differentiation
title_fullStr GAS5 protects against osteoporosis by targeting UPF1/SMAD7 axis in osteoblast differentiation
title_full_unstemmed GAS5 protects against osteoporosis by targeting UPF1/SMAD7 axis in osteoblast differentiation
title_short GAS5 protects against osteoporosis by targeting UPF1/SMAD7 axis in osteoblast differentiation
title_sort gas5 protects against osteoporosis by targeting upf1/smad7 axis in osteoblast differentiation
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7609060/
https://www.ncbi.nlm.nih.gov/pubmed/33006314
http://dx.doi.org/10.7554/eLife.59079
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