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Increased PLEKHO1 within osteoblasts suppresses Smad‐dependent BMP signaling to inhibit bone formation during aging

Emerging evidence indicates that the dysregulation of protein ubiquitination plays a crucial role in aging‐associated diseases. Smad‐dependent canonical BMP signaling pathway is indispensable for osteoblastic bone formation, which could be disrupted by the ubiquitination and subsequent proteasomal d...

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Autores principales: Liu, Jin, Liang, Chao, Guo, Baosheng, Wu, Xiaohao, Li, Defang, Zhang, Zongkang, Zheng, Kang, Dang, Lei, He, Xiaojuan, Lu, Changwei, Peng, Songlin, Pan, Xiaohua, Zhang, Bao‐Ting, Lu, Aiping, Zhang, Ge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5334543/
https://www.ncbi.nlm.nih.gov/pubmed/28083909
http://dx.doi.org/10.1111/acel.12566
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author Liu, Jin
Liang, Chao
Guo, Baosheng
Wu, Xiaohao
Li, Defang
Zhang, Zongkang
Zheng, Kang
Dang, Lei
He, Xiaojuan
Lu, Changwei
Peng, Songlin
Pan, Xiaohua
Zhang, Bao‐Ting
Lu, Aiping
Zhang, Ge
author_facet Liu, Jin
Liang, Chao
Guo, Baosheng
Wu, Xiaohao
Li, Defang
Zhang, Zongkang
Zheng, Kang
Dang, Lei
He, Xiaojuan
Lu, Changwei
Peng, Songlin
Pan, Xiaohua
Zhang, Bao‐Ting
Lu, Aiping
Zhang, Ge
author_sort Liu, Jin
collection PubMed
description Emerging evidence indicates that the dysregulation of protein ubiquitination plays a crucial role in aging‐associated diseases. Smad‐dependent canonical BMP signaling pathway is indispensable for osteoblastic bone formation, which could be disrupted by the ubiquitination and subsequent proteasomal degradation of Smad1/5, the key molecules for BMP signaling transduction. However, whether the dysregulation of Smad1/5 ubiquitination and disrupted BMP signaling pathway is responsible for the age‐related bone formation reduction is still underexplored. Pleckstrin homology domain‐containing family O member 1 (PLEKHO1) is a previously identified ubiquitination‐related molecule that could specifically target the linker region between the WW domains of Smurf1 to promote the ubiquitination of Smad1/5. Here, we found an age‐related increase in the expression of PLEKHO1 in bone specimens from either fractured patients or aging rodents, which was associated with the age‐related reduction in Smad‐dependent BMP signaling and bone formation. By genetic approach, we demonstrated that loss of Plekho1 in osteoblasts could promote the Smad‐dependent BMP signaling and alleviated the age‐related bone formation reduction. In addition, osteoblast‐specific Smad1 overexpression had beneficial effect on bone formation during aging, which could be counteracted after overexpressing Plekho1 within osteoblasts. By pharmacological approach, we showed that osteoblast‐targeted Plekho1 siRNA treatment could enhance Smad‐dependent BMP signaling and promote bone formation in aging rodents. Taken together, it suggests that the increased PLEKHO1 could suppress Smad‐dependent BMP signaling to inhibit bone formation during aging, indicating the translational potential of targeting PLEKHO1 in osteoblast as a novel bone anabolic strategy for reversing established osteoporosis during aging.
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spelling pubmed-53345432017-04-01 Increased PLEKHO1 within osteoblasts suppresses Smad‐dependent BMP signaling to inhibit bone formation during aging Liu, Jin Liang, Chao Guo, Baosheng Wu, Xiaohao Li, Defang Zhang, Zongkang Zheng, Kang Dang, Lei He, Xiaojuan Lu, Changwei Peng, Songlin Pan, Xiaohua Zhang, Bao‐Ting Lu, Aiping Zhang, Ge Aging Cell Original Articles Emerging evidence indicates that the dysregulation of protein ubiquitination plays a crucial role in aging‐associated diseases. Smad‐dependent canonical BMP signaling pathway is indispensable for osteoblastic bone formation, which could be disrupted by the ubiquitination and subsequent proteasomal degradation of Smad1/5, the key molecules for BMP signaling transduction. However, whether the dysregulation of Smad1/5 ubiquitination and disrupted BMP signaling pathway is responsible for the age‐related bone formation reduction is still underexplored. Pleckstrin homology domain‐containing family O member 1 (PLEKHO1) is a previously identified ubiquitination‐related molecule that could specifically target the linker region between the WW domains of Smurf1 to promote the ubiquitination of Smad1/5. Here, we found an age‐related increase in the expression of PLEKHO1 in bone specimens from either fractured patients or aging rodents, which was associated with the age‐related reduction in Smad‐dependent BMP signaling and bone formation. By genetic approach, we demonstrated that loss of Plekho1 in osteoblasts could promote the Smad‐dependent BMP signaling and alleviated the age‐related bone formation reduction. In addition, osteoblast‐specific Smad1 overexpression had beneficial effect on bone formation during aging, which could be counteracted after overexpressing Plekho1 within osteoblasts. By pharmacological approach, we showed that osteoblast‐targeted Plekho1 siRNA treatment could enhance Smad‐dependent BMP signaling and promote bone formation in aging rodents. Taken together, it suggests that the increased PLEKHO1 could suppress Smad‐dependent BMP signaling to inhibit bone formation during aging, indicating the translational potential of targeting PLEKHO1 in osteoblast as a novel bone anabolic strategy for reversing established osteoporosis during aging. John Wiley and Sons Inc. 2017-01-13 2017-04 /pmc/articles/PMC5334543/ /pubmed/28083909 http://dx.doi.org/10.1111/acel.12566 Text en © 2016 The Authors. Aging Cell published by the Anatomical Society and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Liu, Jin
Liang, Chao
Guo, Baosheng
Wu, Xiaohao
Li, Defang
Zhang, Zongkang
Zheng, Kang
Dang, Lei
He, Xiaojuan
Lu, Changwei
Peng, Songlin
Pan, Xiaohua
Zhang, Bao‐Ting
Lu, Aiping
Zhang, Ge
Increased PLEKHO1 within osteoblasts suppresses Smad‐dependent BMP signaling to inhibit bone formation during aging
title Increased PLEKHO1 within osteoblasts suppresses Smad‐dependent BMP signaling to inhibit bone formation during aging
title_full Increased PLEKHO1 within osteoblasts suppresses Smad‐dependent BMP signaling to inhibit bone formation during aging
title_fullStr Increased PLEKHO1 within osteoblasts suppresses Smad‐dependent BMP signaling to inhibit bone formation during aging
title_full_unstemmed Increased PLEKHO1 within osteoblasts suppresses Smad‐dependent BMP signaling to inhibit bone formation during aging
title_short Increased PLEKHO1 within osteoblasts suppresses Smad‐dependent BMP signaling to inhibit bone formation during aging
title_sort increased plekho1 within osteoblasts suppresses smad‐dependent bmp signaling to inhibit bone formation during aging
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5334543/
https://www.ncbi.nlm.nih.gov/pubmed/28083909
http://dx.doi.org/10.1111/acel.12566
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