Literature DB >> 32608081

A marine fungus-derived nitrobenzoyl sesquiterpenoid suppresses receptor activator of NF-κB ligand-induced osteoclastogenesis and inflammatory bone destruction.

Yanhui Tan1,2, Wende Deng1,2, Yueyang Zhang1,2, Minhong Ke1,2, Binhua Zou1,2, Xiaowei Luo3, Jianbin Su1,2, Yiyuan Wang1,2, Jialan Xu1,2, Kutty Selva Nandakumar2, Yonghong Liu3, Xuefeng Zhou3, Xiaojuan Li1,2.   

Abstract

BACKGROUND AND
PURPOSE: Osteoclasts are unique cells to absorb bone. Targeting osteoclast differentiation is a therapeutic strategy for osteolytic diseases. Natural marine products have already become important sources of new drugs. The naturally occurring nitrobenzoyl sesquiterpenoids first identified from marine fungi in 1998 are bioactive compounds with a special structure, but their pharmacological functions are largely unknown. Here, we investigated six marine fungus-derived nitrobenzoyl sesquiterpenoids on osteoclastogenesis and elucidated the mechanisms. EXPERIMENTAL APPROACH: Compounds were first tested by RANKL-induced NF-κB luciferase activity and osteoclastic TRAP assay, followed by molecular docking to characterize the structure-activity relationship. The effects and mechanisms of the most potent nitrobenzoyl sesquiterpenoid on RANKL-induced osteoclastogenesis and bone resorption were further evaluated in vitro. Micro-CT and histology analysis were used to assess the prevention of bone destruction by nitrobenzoyl sesquiterpenoids in vivo. KEY
RESULTS: Nitrobenzoyl sesquiterpenoid 4, with a nitrobenzoyl moiety at C-14 and a hydroxyl group at C-9, was the most active compound on NF-κB activity and osteoclastogenesis. Consequently, nitrobenzoyl sesquiterpenoid 4 exhibited suppression of RANKL-induced osteoclastogenesis and bone resorption from 0.5 μM. It blocked RANKL-induced IκBa phosphorylation, NF-κB p65 and RelB nuclear translocation, NFATc1 activation, reduced DC-STAMP but not c-Fos expression during osteoclastogenesis in vitro. Nitrobenzoyl sesquiterpenoid 4 also ameliorated LPS-induced osteolysis in vivo. CONCLUSION AND IMPLICATIONS: These results highlighted nitrobenzoyl sesquiterpenoid 4 as a novel inhibitor of osteoclast differentiation. This marine-derived sesquiterpenoid is a promising lead compound for the treatment of osteolytic diseases.
© 2020 The British Pharmacological Society.

Entities:  

Keywords:  DC-STAMP; NF-κB; NFATc1; nitrobenzoyl sesquiterpenoids; osteoclast; osteolysis

Mesh:

Substances:

Year:  2020        PMID: 32608081      PMCID: PMC7443469          DOI: 10.1111/bph.15179

Source DB:  PubMed          Journal:  Br J Pharmacol        ISSN: 0007-1188            Impact factor:   8.739


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  7 in total

1.  A marine fungus-derived nitrobenzoyl sesquiterpenoid suppresses receptor activator of NF-κB ligand-induced osteoclastogenesis and inflammatory bone destruction.

Authors:  Yanhui Tan; Wende Deng; Yueyang Zhang; Minhong Ke; Binhua Zou; Xiaowei Luo; Jianbin Su; Yiyuan Wang; Jialan Xu; Kutty Selva Nandakumar; Yonghong Liu; Xuefeng Zhou; Xiaojuan Li
Journal:  Br J Pharmacol       Date:  2020-08-11       Impact factor: 8.739

2.  Thiodiketopiperazines and Alkane Derivatives Produced by the Mangrove Sediment-Derived Fungus Penicillium ludwigii SCSIO 41408.

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Authors:  Jinjin Cao; Ming-Xue Zhou; Xinyan Chen; Menglu Sun; Congmin Wei; Qisheng Peng; Zhou Cheng; Wanchun Sun; Hongbing Wang
Journal:  Front Immunol       Date:  2022-04-26       Impact factor: 8.786

4.  New 3-Acyl Tetramic Acid Derivatives from the Deep-Sea-Derived Fungus Lecanicillium fusisporum.

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Review 5.  Marine natural products that inhibit osteoclastogenesis and promote osteoblast differentiation.

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6.  A Nitrobenzoyl Sesquiterpenoid Insulicolide A Prevents Osteoclast Formation via Suppressing c-Fos-NFATc1 Signaling Pathway.

Authors:  Yanhui Tan; Minhong Ke; Zhichao Li; Yan Chen; Jiehuang Zheng; Yiyuan Wang; Xuefeng Zhou; Gang Huang; Xiaojuan Li
Journal:  Front Pharmacol       Date:  2022-01-17       Impact factor: 5.810

7.  Anti-Osteoclastogenic and Antibacterial Effects of Chlorinated Polyketides from the Beibu Gulf Coral-Derived Fungus Aspergillus unguis GXIMD 02505.

Authors:  Yanting Zhang; Zhichao Li; Bingyao Huang; Kai Liu; Shuai Peng; Xinming Liu; Chenghai Gao; Yonghong Liu; Yanhui Tan; Xiaowei Luo
Journal:  Mar Drugs       Date:  2022-02-28       Impact factor: 5.118

  7 in total

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