Cargando…

Guaiacol suppresses osteoclastogenesis by blocking interactions of RANK with TRAF6 and C‐Src and inhibiting NF‐κB, MAPK and AKT pathways

Angelica sinensis (AS; Dang Gui), a traditional Chinese herb, has for centuries been used for the treatment of bone diseases, including osteoporosis and osteonecrosis. However, the effective ingredient and underlying mechanisms remain elusive. Here, we identified guaiacol as the active component of...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhi, Xin, Fang, Chao, Gu, Yanqiu, Chen, Huiwen, Chen, Xiaofei, Cui, Jin, Hu, Yan, Weng, Weizong, Zhou, Qirong, Wang, Yajun, Wang, Yao, Jiang, Hao, Li, Xiaoqun, Cao, Liehu, Chen, Xiao, Su, Jiacan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7205840/
https://www.ncbi.nlm.nih.gov/pubmed/32185887
http://dx.doi.org/10.1111/jcmm.15153
_version_ 1783530315979948032
author Zhi, Xin
Fang, Chao
Gu, Yanqiu
Chen, Huiwen
Chen, Xiaofei
Cui, Jin
Hu, Yan
Weng, Weizong
Zhou, Qirong
Wang, Yajun
Wang, Yao
Jiang, Hao
Li, Xiaoqun
Cao, Liehu
Chen, Xiao
Su, Jiacan
author_facet Zhi, Xin
Fang, Chao
Gu, Yanqiu
Chen, Huiwen
Chen, Xiaofei
Cui, Jin
Hu, Yan
Weng, Weizong
Zhou, Qirong
Wang, Yajun
Wang, Yao
Jiang, Hao
Li, Xiaoqun
Cao, Liehu
Chen, Xiao
Su, Jiacan
author_sort Zhi, Xin
collection PubMed
description Angelica sinensis (AS; Dang Gui), a traditional Chinese herb, has for centuries been used for the treatment of bone diseases, including osteoporosis and osteonecrosis. However, the effective ingredient and underlying mechanisms remain elusive. Here, we identified guaiacol as the active component of AS by two‐dimensional cell membrane chromatography/C18 column/time‐of‐flight mass spectrometry (2D CMC/C18 column/TOFMS). Guaiacol suppressed osteoclastogenesis and osteoclast function in bone marrow monocytes (BMMCs) and RAW264.7 cells in vitro in a dose‐dependent manner. Co‐immunoprecipitation indicated that guaiacol blocked RANK‐TRAF6 association and RANK‐C‐Src association. Moreover, guaiacol prevented phosphorylation of p65, p50, IκB (NF‐κB pathway), ERK, JNK, c‐fos, p38 (MAPK pathway) and Akt (AKT pathway), and reduced the expression levels of Cathepsin K, CTR, MMP‐9 and TRAP. Guaiacol also suppressed the expression of nuclear factor of activated T‐cells cytoplasmic 1(NFATc1) and the RANKL‐induced Ca(2+) oscillation. In vivo, it ameliorated ovariectomy‐induced bone loss by suppressing excessive osteoclastogenesis. Taken together, our findings suggest that guaiacol inhibits RANKL‐induced osteoclastogenesis by blocking the interactions of RANK with TRAF6 and C‐Src, and by suppressing the NF‐κB, MAPK and AKT signalling pathways. Therefore, this compound shows therapeutic potential for osteoclastogenesis‐related bone diseases, including postmenopausal osteoporosis.
format Online
Article
Text
id pubmed-7205840
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-72058402020-05-11 Guaiacol suppresses osteoclastogenesis by blocking interactions of RANK with TRAF6 and C‐Src and inhibiting NF‐κB, MAPK and AKT pathways Zhi, Xin Fang, Chao Gu, Yanqiu Chen, Huiwen Chen, Xiaofei Cui, Jin Hu, Yan Weng, Weizong Zhou, Qirong Wang, Yajun Wang, Yao Jiang, Hao Li, Xiaoqun Cao, Liehu Chen, Xiao Su, Jiacan J Cell Mol Med Original Articles Angelica sinensis (AS; Dang Gui), a traditional Chinese herb, has for centuries been used for the treatment of bone diseases, including osteoporosis and osteonecrosis. However, the effective ingredient and underlying mechanisms remain elusive. Here, we identified guaiacol as the active component of AS by two‐dimensional cell membrane chromatography/C18 column/time‐of‐flight mass spectrometry (2D CMC/C18 column/TOFMS). Guaiacol suppressed osteoclastogenesis and osteoclast function in bone marrow monocytes (BMMCs) and RAW264.7 cells in vitro in a dose‐dependent manner. Co‐immunoprecipitation indicated that guaiacol blocked RANK‐TRAF6 association and RANK‐C‐Src association. Moreover, guaiacol prevented phosphorylation of p65, p50, IκB (NF‐κB pathway), ERK, JNK, c‐fos, p38 (MAPK pathway) and Akt (AKT pathway), and reduced the expression levels of Cathepsin K, CTR, MMP‐9 and TRAP. Guaiacol also suppressed the expression of nuclear factor of activated T‐cells cytoplasmic 1(NFATc1) and the RANKL‐induced Ca(2+) oscillation. In vivo, it ameliorated ovariectomy‐induced bone loss by suppressing excessive osteoclastogenesis. Taken together, our findings suggest that guaiacol inhibits RANKL‐induced osteoclastogenesis by blocking the interactions of RANK with TRAF6 and C‐Src, and by suppressing the NF‐κB, MAPK and AKT signalling pathways. Therefore, this compound shows therapeutic potential for osteoclastogenesis‐related bone diseases, including postmenopausal osteoporosis. John Wiley and Sons Inc. 2020-03-17 2020-05 /pmc/articles/PMC7205840/ /pubmed/32185887 http://dx.doi.org/10.1111/jcmm.15153 Text en © 2020 The Authors. Journal of Cellular and Molecular Medicine published by Foundation for Cellular and Molecular Medicine and John Wiley & Sons Ltd. This is an open access article under the terms of the 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
Zhi, Xin
Fang, Chao
Gu, Yanqiu
Chen, Huiwen
Chen, Xiaofei
Cui, Jin
Hu, Yan
Weng, Weizong
Zhou, Qirong
Wang, Yajun
Wang, Yao
Jiang, Hao
Li, Xiaoqun
Cao, Liehu
Chen, Xiao
Su, Jiacan
Guaiacol suppresses osteoclastogenesis by blocking interactions of RANK with TRAF6 and C‐Src and inhibiting NF‐κB, MAPK and AKT pathways
title Guaiacol suppresses osteoclastogenesis by blocking interactions of RANK with TRAF6 and C‐Src and inhibiting NF‐κB, MAPK and AKT pathways
title_full Guaiacol suppresses osteoclastogenesis by blocking interactions of RANK with TRAF6 and C‐Src and inhibiting NF‐κB, MAPK and AKT pathways
title_fullStr Guaiacol suppresses osteoclastogenesis by blocking interactions of RANK with TRAF6 and C‐Src and inhibiting NF‐κB, MAPK and AKT pathways
title_full_unstemmed Guaiacol suppresses osteoclastogenesis by blocking interactions of RANK with TRAF6 and C‐Src and inhibiting NF‐κB, MAPK and AKT pathways
title_short Guaiacol suppresses osteoclastogenesis by blocking interactions of RANK with TRAF6 and C‐Src and inhibiting NF‐κB, MAPK and AKT pathways
title_sort guaiacol suppresses osteoclastogenesis by blocking interactions of rank with traf6 and c‐src and inhibiting nf‐κb, mapk and akt pathways
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7205840/
https://www.ncbi.nlm.nih.gov/pubmed/32185887
http://dx.doi.org/10.1111/jcmm.15153
work_keys_str_mv AT zhixin guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT fangchao guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT guyanqiu guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT chenhuiwen guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT chenxiaofei guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT cuijin guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT huyan guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT wengweizong guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT zhouqirong guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT wangyajun guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT wangyao guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT jianghao guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT lixiaoqun guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT caoliehu guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT chenxiao guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways
AT sujiacan guaiacolsuppressesosteoclastogenesisbyblockinginteractionsofrankwithtraf6andcsrcandinhibitingnfkbmapkandaktpathways