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The mechanosensitive lncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention

Mechanical stimulation plays an important role in bone remodeling. Exercise-induced mechanical loading enhances bone strength, whereas mechanical unloading leads to bone loss. Increasing evidence has demonstrated that long noncoding RNAs (lncRNAs) play key roles in diverse biological, physiological...

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Autores principales: Liu, Caizhi, Gao, Xingcheng, Li, Yuheng, Sun, Weijia, Xu, Youjia, Tan, Yingjun, Du, Ruikai, Zhong, Guohui, Zhao, Dingsheng, Liu, Zizhong, Jin, Xiaoyan, Zhao, Yinlong, Wang, Yinbo, Yuan, Xinxin, Pan, Junjie, Yuan, Guodong, Li, Youyou, Xing, Wenjuan, Kan, Guanghan, Wang, Yanqing, Li, Qi, Han, Xuan, Li, Jianwei, Ling, Shukuan, Li, Yingxian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8873336/
https://www.ncbi.nlm.nih.gov/pubmed/35210394
http://dx.doi.org/10.1038/s41413-022-00191-3
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author Liu, Caizhi
Gao, Xingcheng
Li, Yuheng
Sun, Weijia
Xu, Youjia
Tan, Yingjun
Du, Ruikai
Zhong, Guohui
Zhao, Dingsheng
Liu, Zizhong
Jin, Xiaoyan
Zhao, Yinlong
Wang, Yinbo
Yuan, Xinxin
Pan, Junjie
Yuan, Guodong
Li, Youyou
Xing, Wenjuan
Kan, Guanghan
Wang, Yanqing
Li, Qi
Han, Xuan
Li, Jianwei
Ling, Shukuan
Li, Yingxian
author_facet Liu, Caizhi
Gao, Xingcheng
Li, Yuheng
Sun, Weijia
Xu, Youjia
Tan, Yingjun
Du, Ruikai
Zhong, Guohui
Zhao, Dingsheng
Liu, Zizhong
Jin, Xiaoyan
Zhao, Yinlong
Wang, Yinbo
Yuan, Xinxin
Pan, Junjie
Yuan, Guodong
Li, Youyou
Xing, Wenjuan
Kan, Guanghan
Wang, Yanqing
Li, Qi
Han, Xuan
Li, Jianwei
Ling, Shukuan
Li, Yingxian
author_sort Liu, Caizhi
collection PubMed
description Mechanical stimulation plays an important role in bone remodeling. Exercise-induced mechanical loading enhances bone strength, whereas mechanical unloading leads to bone loss. Increasing evidence has demonstrated that long noncoding RNAs (lncRNAs) play key roles in diverse biological, physiological and pathological contexts. However, the roles of lncRNAs in mechanotransduction and their relationships with bone formation remain unknown. In this study, we screened mechanosensing lncRNAs in osteoblasts and identified Neat1, the most clearly decreased lncRNA under simulated microgravity. Of note, not only Neat1 expression but also the specific paraspeckle structure formed by Neat1 was sensitive to different mechanical stimulations, which were closely associated with osteoblast function. Paraspeckles exhibited small punctate aggregates under simulated microgravity and elongated prolate or larger irregular structures under mechanical loading. Neat1 knockout mice displayed disrupted bone formation, impaired bone structure and strength, and reduced bone mass. Neat1 deficiency in osteoblasts reduced the response of osteoblasts to mechanical stimulation. In vivo, Neat1 knockout in mice weakened the bone phenotypes in response to mechanical loading and hindlimb unloading stimulation. Mechanistically, paraspeckles promoted nuclear retention of E3 ubiquitin ligase Smurf1 mRNA and downregulation of their translation, thus inhibiting ubiquitination-mediated degradation of the osteoblast master transcription factor Runx2, a Smurf1 target. Our study revealed that Neat1 plays an essential role in osteoblast function under mechanical stimulation, which provides a paradigm for the function of the lncRNA-assembled structure in response to mechanical stimulation and offers a therapeutic strategy for long-term spaceflight- or bedrest-induced bone loss and age-related osteoporosis.
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spelling pubmed-88733362022-03-17 The mechanosensitive lncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention Liu, Caizhi Gao, Xingcheng Li, Yuheng Sun, Weijia Xu, Youjia Tan, Yingjun Du, Ruikai Zhong, Guohui Zhao, Dingsheng Liu, Zizhong Jin, Xiaoyan Zhao, Yinlong Wang, Yinbo Yuan, Xinxin Pan, Junjie Yuan, Guodong Li, Youyou Xing, Wenjuan Kan, Guanghan Wang, Yanqing Li, Qi Han, Xuan Li, Jianwei Ling, Shukuan Li, Yingxian Bone Res Article Mechanical stimulation plays an important role in bone remodeling. Exercise-induced mechanical loading enhances bone strength, whereas mechanical unloading leads to bone loss. Increasing evidence has demonstrated that long noncoding RNAs (lncRNAs) play key roles in diverse biological, physiological and pathological contexts. However, the roles of lncRNAs in mechanotransduction and their relationships with bone formation remain unknown. In this study, we screened mechanosensing lncRNAs in osteoblasts and identified Neat1, the most clearly decreased lncRNA under simulated microgravity. Of note, not only Neat1 expression but also the specific paraspeckle structure formed by Neat1 was sensitive to different mechanical stimulations, which were closely associated with osteoblast function. Paraspeckles exhibited small punctate aggregates under simulated microgravity and elongated prolate or larger irregular structures under mechanical loading. Neat1 knockout mice displayed disrupted bone formation, impaired bone structure and strength, and reduced bone mass. Neat1 deficiency in osteoblasts reduced the response of osteoblasts to mechanical stimulation. In vivo, Neat1 knockout in mice weakened the bone phenotypes in response to mechanical loading and hindlimb unloading stimulation. Mechanistically, paraspeckles promoted nuclear retention of E3 ubiquitin ligase Smurf1 mRNA and downregulation of their translation, thus inhibiting ubiquitination-mediated degradation of the osteoblast master transcription factor Runx2, a Smurf1 target. Our study revealed that Neat1 plays an essential role in osteoblast function under mechanical stimulation, which provides a paradigm for the function of the lncRNA-assembled structure in response to mechanical stimulation and offers a therapeutic strategy for long-term spaceflight- or bedrest-induced bone loss and age-related osteoporosis. Nature Publishing Group UK 2022-02-24 /pmc/articles/PMC8873336/ /pubmed/35210394 http://dx.doi.org/10.1038/s41413-022-00191-3 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Liu, Caizhi
Gao, Xingcheng
Li, Yuheng
Sun, Weijia
Xu, Youjia
Tan, Yingjun
Du, Ruikai
Zhong, Guohui
Zhao, Dingsheng
Liu, Zizhong
Jin, Xiaoyan
Zhao, Yinlong
Wang, Yinbo
Yuan, Xinxin
Pan, Junjie
Yuan, Guodong
Li, Youyou
Xing, Wenjuan
Kan, Guanghan
Wang, Yanqing
Li, Qi
Han, Xuan
Li, Jianwei
Ling, Shukuan
Li, Yingxian
The mechanosensitive lncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention
title The mechanosensitive lncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention
title_full The mechanosensitive lncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention
title_fullStr The mechanosensitive lncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention
title_full_unstemmed The mechanosensitive lncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention
title_short The mechanosensitive lncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention
title_sort mechanosensitive lncrna neat1 promotes osteoblast function through paraspeckle-dependent smurf1 mrna retention
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8873336/
https://www.ncbi.nlm.nih.gov/pubmed/35210394
http://dx.doi.org/10.1038/s41413-022-00191-3
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