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Zinc inhibits osteoclast differentiation by suppression of Ca(2+)-Calcineurin-NFATc1 signaling pathway

BACKGROUND: Zinc, an essential trace element, inhibits osteoclast differentiation in vitro and in vivo. The molecular mechanism for the inhibitory effect of zinc, however, is poorly understood. The purpose of this study was to investigate the effect of zinc and determine its molecular mechanism on r...

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Autores principales: Park, Kwang Hwan, Park, Boryung, Yoon, Dong Suk, Kwon, Seung-Hyun, Shin, Dong Min, Lee, Jin Woo, Lee, Hyun Gyu, Shim, Jae-Hyuck, Park, Jeon Han, Lee, Jae Myun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3851046/
https://www.ncbi.nlm.nih.gov/pubmed/24088289
http://dx.doi.org/10.1186/1478-811X-11-74
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author Park, Kwang Hwan
Park, Boryung
Yoon, Dong Suk
Kwon, Seung-Hyun
Shin, Dong Min
Lee, Jin Woo
Lee, Hyun Gyu
Shim, Jae-Hyuck
Park, Jeon Han
Lee, Jae Myun
author_facet Park, Kwang Hwan
Park, Boryung
Yoon, Dong Suk
Kwon, Seung-Hyun
Shin, Dong Min
Lee, Jin Woo
Lee, Hyun Gyu
Shim, Jae-Hyuck
Park, Jeon Han
Lee, Jae Myun
author_sort Park, Kwang Hwan
collection PubMed
description BACKGROUND: Zinc, an essential trace element, inhibits osteoclast differentiation in vitro and in vivo. The molecular mechanism for the inhibitory effect of zinc, however, is poorly understood. The purpose of this study was to investigate the effect of zinc and determine its molecular mechanism on receptor activator of NF-κB ligand (RANKL)-induced osteoclastogenesis in mouse bone marrow-derived monocyte cells (BMMs) and RAW264.7 cells. RESULTS: In BMMs, zinc treatment during osteoclast differentiation decreased RANKL-induced osteoclast formation in a dose-dependent manner. We show that zinc suppressed the mRNA levels of nuclear factor of activated T-cells, cytoplasmic 1 (Nfatc1). Zinc also accumulated phospho-Nfatc1 (p-Nfatc1) in the cytosol in a dose-dependent manner and inhibited the translocation of Nfatc1 to the nucleus in RAW264.7 cells. Zinc suppressed the activities of Nfatc1 in the nucleus without changing the activities of NF-κB in RAW264.7 cells. In contrast, calcineurin activity decreased in response to zinc but its protein level was unchanged. RANKL-induced Ca(2+) oscillations were inhibited by zinc treatment, but phospho-phospholipase Cγ1 (p-PLCγ1), the upstream signaling molecule of Ca(2+) oscillations, was unaffected. Moreover, a constitutively active form of Nfatc1 obviously rescued suppression of osteoclastogenesis by zinc. CONCLUSIONS: Taken together, these results demonstrate for the first time that the inhibitory effect of zinc during osteoclastogesis is caused by suppressing the Ca(2+)-Calcineurin-NFATc1 signaling pathway. Thus, zinc may be a useful therapeutic candidate for the prevention of bone loss caused by NFATc1 activation in osteoclasts.
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spelling pubmed-38510462013-12-05 Zinc inhibits osteoclast differentiation by suppression of Ca(2+)-Calcineurin-NFATc1 signaling pathway Park, Kwang Hwan Park, Boryung Yoon, Dong Suk Kwon, Seung-Hyun Shin, Dong Min Lee, Jin Woo Lee, Hyun Gyu Shim, Jae-Hyuck Park, Jeon Han Lee, Jae Myun Cell Commun Signal Research BACKGROUND: Zinc, an essential trace element, inhibits osteoclast differentiation in vitro and in vivo. The molecular mechanism for the inhibitory effect of zinc, however, is poorly understood. The purpose of this study was to investigate the effect of zinc and determine its molecular mechanism on receptor activator of NF-κB ligand (RANKL)-induced osteoclastogenesis in mouse bone marrow-derived monocyte cells (BMMs) and RAW264.7 cells. RESULTS: In BMMs, zinc treatment during osteoclast differentiation decreased RANKL-induced osteoclast formation in a dose-dependent manner. We show that zinc suppressed the mRNA levels of nuclear factor of activated T-cells, cytoplasmic 1 (Nfatc1). Zinc also accumulated phospho-Nfatc1 (p-Nfatc1) in the cytosol in a dose-dependent manner and inhibited the translocation of Nfatc1 to the nucleus in RAW264.7 cells. Zinc suppressed the activities of Nfatc1 in the nucleus without changing the activities of NF-κB in RAW264.7 cells. In contrast, calcineurin activity decreased in response to zinc but its protein level was unchanged. RANKL-induced Ca(2+) oscillations were inhibited by zinc treatment, but phospho-phospholipase Cγ1 (p-PLCγ1), the upstream signaling molecule of Ca(2+) oscillations, was unaffected. Moreover, a constitutively active form of Nfatc1 obviously rescued suppression of osteoclastogenesis by zinc. CONCLUSIONS: Taken together, these results demonstrate for the first time that the inhibitory effect of zinc during osteoclastogesis is caused by suppressing the Ca(2+)-Calcineurin-NFATc1 signaling pathway. Thus, zinc may be a useful therapeutic candidate for the prevention of bone loss caused by NFATc1 activation in osteoclasts. BioMed Central 2013-10-02 /pmc/articles/PMC3851046/ /pubmed/24088289 http://dx.doi.org/10.1186/1478-811X-11-74 Text en Copyright © 2013 Park et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Park, Kwang Hwan
Park, Boryung
Yoon, Dong Suk
Kwon, Seung-Hyun
Shin, Dong Min
Lee, Jin Woo
Lee, Hyun Gyu
Shim, Jae-Hyuck
Park, Jeon Han
Lee, Jae Myun
Zinc inhibits osteoclast differentiation by suppression of Ca(2+)-Calcineurin-NFATc1 signaling pathway
title Zinc inhibits osteoclast differentiation by suppression of Ca(2+)-Calcineurin-NFATc1 signaling pathway
title_full Zinc inhibits osteoclast differentiation by suppression of Ca(2+)-Calcineurin-NFATc1 signaling pathway
title_fullStr Zinc inhibits osteoclast differentiation by suppression of Ca(2+)-Calcineurin-NFATc1 signaling pathway
title_full_unstemmed Zinc inhibits osteoclast differentiation by suppression of Ca(2+)-Calcineurin-NFATc1 signaling pathway
title_short Zinc inhibits osteoclast differentiation by suppression of Ca(2+)-Calcineurin-NFATc1 signaling pathway
title_sort zinc inhibits osteoclast differentiation by suppression of ca(2+)-calcineurin-nfatc1 signaling pathway
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3851046/
https://www.ncbi.nlm.nih.gov/pubmed/24088289
http://dx.doi.org/10.1186/1478-811X-11-74
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