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Babam2 negatively regulates osteoclastogenesis by interacting with Hey1 to inhibit Nfatc1 transcription

Osteoclast-mediated excessive bone resorption was highly related to diverse bone diseases including osteoporosis. BRISC and BRCA1-A complex member 2 (Babam2) was an evolutionarily conserved protein that is highly expressed in bone tissues. However, whether Babam2 is involved in osteoclast formation...

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Autores principales: Jin, Fujun, Zhu, Yexuan, Liu, Meijing, Wang, Rongze, Cui, Yi, Wu, Yanting, Liu, Gang, Wang, Yifei, Wang, Xiaogang, Ren, Zhe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9295054/
https://www.ncbi.nlm.nih.gov/pubmed/35864959
http://dx.doi.org/10.7150/ijbs.72487
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author Jin, Fujun
Zhu, Yexuan
Liu, Meijing
Wang, Rongze
Cui, Yi
Wu, Yanting
Liu, Gang
Wang, Yifei
Wang, Xiaogang
Ren, Zhe
author_facet Jin, Fujun
Zhu, Yexuan
Liu, Meijing
Wang, Rongze
Cui, Yi
Wu, Yanting
Liu, Gang
Wang, Yifei
Wang, Xiaogang
Ren, Zhe
author_sort Jin, Fujun
collection PubMed
description Osteoclast-mediated excessive bone resorption was highly related to diverse bone diseases including osteoporosis. BRISC and BRCA1-A complex member 2 (Babam2) was an evolutionarily conserved protein that is highly expressed in bone tissues. However, whether Babam2 is involved in osteoclast formation is still unclear. In this study, we identify Babam2 as an essential negative regulator of osteoclast formation. We demonstrate that Babam2 knockdown significantly accelerated osteoclast formation and activity, while Babam2 overexpression blocked osteoclast formation and activity. Moreover, we demonstrate that the bone resorption activity was significantly downregulated in Babam2-transgenic mice as compared with wild-type littermates. Consistently, the bone mass of the Babam2-transgenic mice was increased. Furthermore, we found that Babam2-transgenic mice were protected from LPS-induced bone resorption activation and thus reduced the calvarial bone lesions. Mechanistically, we demonstrate that the inhibitory effects of Babam2 on osteoclast differentiation were dependent on Hey1. As silencing Hey1 largely diminished the effects of Babam2 on osteoclastogenesis. Finally, we show that Babam2 interacts with Hey1 to inhibit Nfatc1 transcription. In sum, our results suggested that Babam2 negatively regulates osteoclastogenesis and bone resorption by interacting with Hey1 to inhibit Nfatc1 transcription. Therefore, targeting Babam2 may be a novel therapeutic approach for osteoclast-related bone diseases.
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spelling pubmed-92950542022-07-20 Babam2 negatively regulates osteoclastogenesis by interacting with Hey1 to inhibit Nfatc1 transcription Jin, Fujun Zhu, Yexuan Liu, Meijing Wang, Rongze Cui, Yi Wu, Yanting Liu, Gang Wang, Yifei Wang, Xiaogang Ren, Zhe Int J Biol Sci Research Paper Osteoclast-mediated excessive bone resorption was highly related to diverse bone diseases including osteoporosis. BRISC and BRCA1-A complex member 2 (Babam2) was an evolutionarily conserved protein that is highly expressed in bone tissues. However, whether Babam2 is involved in osteoclast formation is still unclear. In this study, we identify Babam2 as an essential negative regulator of osteoclast formation. We demonstrate that Babam2 knockdown significantly accelerated osteoclast formation and activity, while Babam2 overexpression blocked osteoclast formation and activity. Moreover, we demonstrate that the bone resorption activity was significantly downregulated in Babam2-transgenic mice as compared with wild-type littermates. Consistently, the bone mass of the Babam2-transgenic mice was increased. Furthermore, we found that Babam2-transgenic mice were protected from LPS-induced bone resorption activation and thus reduced the calvarial bone lesions. Mechanistically, we demonstrate that the inhibitory effects of Babam2 on osteoclast differentiation were dependent on Hey1. As silencing Hey1 largely diminished the effects of Babam2 on osteoclastogenesis. Finally, we show that Babam2 interacts with Hey1 to inhibit Nfatc1 transcription. In sum, our results suggested that Babam2 negatively regulates osteoclastogenesis and bone resorption by interacting with Hey1 to inhibit Nfatc1 transcription. Therefore, targeting Babam2 may be a novel therapeutic approach for osteoclast-related bone diseases. Ivyspring International Publisher 2022-07-11 /pmc/articles/PMC9295054/ /pubmed/35864959 http://dx.doi.org/10.7150/ijbs.72487 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Jin, Fujun
Zhu, Yexuan
Liu, Meijing
Wang, Rongze
Cui, Yi
Wu, Yanting
Liu, Gang
Wang, Yifei
Wang, Xiaogang
Ren, Zhe
Babam2 negatively regulates osteoclastogenesis by interacting with Hey1 to inhibit Nfatc1 transcription
title Babam2 negatively regulates osteoclastogenesis by interacting with Hey1 to inhibit Nfatc1 transcription
title_full Babam2 negatively regulates osteoclastogenesis by interacting with Hey1 to inhibit Nfatc1 transcription
title_fullStr Babam2 negatively regulates osteoclastogenesis by interacting with Hey1 to inhibit Nfatc1 transcription
title_full_unstemmed Babam2 negatively regulates osteoclastogenesis by interacting with Hey1 to inhibit Nfatc1 transcription
title_short Babam2 negatively regulates osteoclastogenesis by interacting with Hey1 to inhibit Nfatc1 transcription
title_sort babam2 negatively regulates osteoclastogenesis by interacting with hey1 to inhibit nfatc1 transcription
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9295054/
https://www.ncbi.nlm.nih.gov/pubmed/35864959
http://dx.doi.org/10.7150/ijbs.72487
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