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Mir155 regulates osteogenesis and bone mass phenotype via targeting S1pr1 gene

MicroRNA-155 (miR155) is overexpressed in various inflammatory diseases and cancer, in which bone resorption and osteolysis are frequently observed. However, the role of miR155 on osteogenesis and bone mass phenotype is still unknown. Here, we report a low bone mass phenotype in the long bone of Mir...

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Autores principales: Zheng, Zhichao, Wu, Lihong, Li, Zhicong, Tang, Ruoshu, Li, Hongtao, Huang, Yinyin, Wang, Tianqi, Xu, Shaofen, Cheng, Haoyu, Ye, Zhitong, Xiao, Dong, Lin, Xiaolin, Wu, Gang, Jaspers, Richard T, Pathak, Janak L
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9839347/
https://www.ncbi.nlm.nih.gov/pubmed/36598122
http://dx.doi.org/10.7554/eLife.77742
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author Zheng, Zhichao
Wu, Lihong
Li, Zhicong
Tang, Ruoshu
Li, Hongtao
Huang, Yinyin
Wang, Tianqi
Xu, Shaofen
Cheng, Haoyu
Ye, Zhitong
Xiao, Dong
Lin, Xiaolin
Wu, Gang
Jaspers, Richard T
Pathak, Janak L
author_facet Zheng, Zhichao
Wu, Lihong
Li, Zhicong
Tang, Ruoshu
Li, Hongtao
Huang, Yinyin
Wang, Tianqi
Xu, Shaofen
Cheng, Haoyu
Ye, Zhitong
Xiao, Dong
Lin, Xiaolin
Wu, Gang
Jaspers, Richard T
Pathak, Janak L
author_sort Zheng, Zhichao
collection PubMed
description MicroRNA-155 (miR155) is overexpressed in various inflammatory diseases and cancer, in which bone resorption and osteolysis are frequently observed. However, the role of miR155 on osteogenesis and bone mass phenotype is still unknown. Here, we report a low bone mass phenotype in the long bone of Mir155-Tg mice compared with wild-type mice. In contrast, Mir155-KO mice showed a high bone mass phenotype and protective effect against inflammation-induced bone loss. Mir155-KO mice showed robust bone regeneration in the ectopic and orthotopic model, but Mir155-Tg mice showed compromised bone regeneration compared with the wild-type mice. Similarly, the osteogenic differentiation potential of bone marrow stromal stem cells (BMSCs) from Mir155-KO mice was robust and Mir155-Tg was compromised compared with that of wild-type mice. Moreover, Mir155 knockdown in BMSCs from wild-type mice showed higher osteogenic differentiation potential, supporting the results from Mir155-KO mice. TargetScan analysis predicted sphingosine 1-phosphate receptor-1 (S1pr1) as a target gene of Mir155, which was further confirmed by luciferase assay and Mir155 knockdown. S1pr1 overexpression in BMSCs robustly promoted osteogenic differentiation without affecting cell viability and proliferation. Furthermore, osteoclastogenic differentiation of Mir155-Tg bone marrow-derived macrophages was inhibited compared with that of wild-type mice. Thus, Mir155 showed a catabolic effect on osteogenesis and bone mass phenotype via interaction with the S1pr1 gene, suggesting inhibition of Mir155 as a potential strategy for bone regeneration and bone defect healing.
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spelling pubmed-98393472023-01-14 Mir155 regulates osteogenesis and bone mass phenotype via targeting S1pr1 gene Zheng, Zhichao Wu, Lihong Li, Zhicong Tang, Ruoshu Li, Hongtao Huang, Yinyin Wang, Tianqi Xu, Shaofen Cheng, Haoyu Ye, Zhitong Xiao, Dong Lin, Xiaolin Wu, Gang Jaspers, Richard T Pathak, Janak L eLife Cell Biology MicroRNA-155 (miR155) is overexpressed in various inflammatory diseases and cancer, in which bone resorption and osteolysis are frequently observed. However, the role of miR155 on osteogenesis and bone mass phenotype is still unknown. Here, we report a low bone mass phenotype in the long bone of Mir155-Tg mice compared with wild-type mice. In contrast, Mir155-KO mice showed a high bone mass phenotype and protective effect against inflammation-induced bone loss. Mir155-KO mice showed robust bone regeneration in the ectopic and orthotopic model, but Mir155-Tg mice showed compromised bone regeneration compared with the wild-type mice. Similarly, the osteogenic differentiation potential of bone marrow stromal stem cells (BMSCs) from Mir155-KO mice was robust and Mir155-Tg was compromised compared with that of wild-type mice. Moreover, Mir155 knockdown in BMSCs from wild-type mice showed higher osteogenic differentiation potential, supporting the results from Mir155-KO mice. TargetScan analysis predicted sphingosine 1-phosphate receptor-1 (S1pr1) as a target gene of Mir155, which was further confirmed by luciferase assay and Mir155 knockdown. S1pr1 overexpression in BMSCs robustly promoted osteogenic differentiation without affecting cell viability and proliferation. Furthermore, osteoclastogenic differentiation of Mir155-Tg bone marrow-derived macrophages was inhibited compared with that of wild-type mice. Thus, Mir155 showed a catabolic effect on osteogenesis and bone mass phenotype via interaction with the S1pr1 gene, suggesting inhibition of Mir155 as a potential strategy for bone regeneration and bone defect healing. eLife Sciences Publications, Ltd 2023-01-04 /pmc/articles/PMC9839347/ /pubmed/36598122 http://dx.doi.org/10.7554/eLife.77742 Text en © 2023, Zheng, Wu, Li et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Zheng, Zhichao
Wu, Lihong
Li, Zhicong
Tang, Ruoshu
Li, Hongtao
Huang, Yinyin
Wang, Tianqi
Xu, Shaofen
Cheng, Haoyu
Ye, Zhitong
Xiao, Dong
Lin, Xiaolin
Wu, Gang
Jaspers, Richard T
Pathak, Janak L
Mir155 regulates osteogenesis and bone mass phenotype via targeting S1pr1 gene
title Mir155 regulates osteogenesis and bone mass phenotype via targeting S1pr1 gene
title_full Mir155 regulates osteogenesis and bone mass phenotype via targeting S1pr1 gene
title_fullStr Mir155 regulates osteogenesis and bone mass phenotype via targeting S1pr1 gene
title_full_unstemmed Mir155 regulates osteogenesis and bone mass phenotype via targeting S1pr1 gene
title_short Mir155 regulates osteogenesis and bone mass phenotype via targeting S1pr1 gene
title_sort mir155 regulates osteogenesis and bone mass phenotype via targeting s1pr1 gene
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9839347/
https://www.ncbi.nlm.nih.gov/pubmed/36598122
http://dx.doi.org/10.7554/eLife.77742
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