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Published on: January 30, 2018
Ganomycin I from Ganoderma lucidum attenuates RANKL-mediated osteoclastogenesis by inhibiting MAPKs and NFATc1
Phuong Thao Tran1, Nguyen Tien Dat2, Nguyen Hai Dang3
1Department of Biochemistry, College of Natural Sciences, Kangwon National University, Chuncheon, Gangwon-Do 24341, Republic of Korea.
Background:
Many bone-related diseases such as osteoporosis and rheumatoid arthritis are commonly associated with excessive activity of the osteoclast. Ganomycin I (GMI), a meroterpenoid isolated from Vietnamese mushroom Ganoderma lucidum, possesses a variety of beneficial effects on human health. However, its impact and underlying mechanism on osteoclastogenesis remain unclear. In the present study, we investigated the effect of GMI on RANKL-induced osteoclast formation in mouse BMMs and RAW264.7 cells.
Methods:
BMMs or RAW264.7 cells were treated with GMI followed by an evaluation of cell viability, RANKL-induced osteoclast differentiation, actin-ring formation, and resorption pits activity. Effects of GMI on RANKL-induced phosphorylation of MAPKs as well as the expression levels of NFATc1 and c-Fos were evaluated by Western blot analysis. Expression levels of osteoclast marker genes were evaluated by Western blot analysis and reverse transcription-qPCR.
Results:
GMI significantly inhibited RANKL-induced osteoclast differentiation by decreasing the number of osteoclasts, osteoclast actin-ring formation, and bone resorption in a dose-dependent manner without affecting cell viability. At molecular level, GMI inhibited the RANKL-induced phosphorylation of ERK, JNK, and p38 MAPKs, as well as the expression levels of c-Fos and NFATc1, which are known to be crucial transcription factors for osteoclast formation. In addition, GMI decreased expression levels of osteoclastogenesis specific marker genes including c-Src, CtsK, TRAP, MMP-9, OSCAR, and DC-STAMP in RANKL-stimulated BMMs.
Conclusion:
Our findings suggest that GMI can attenuate osteoclast formation by suppressing RANKL-mediated MAPKs and NFATc1 signaling pathways and the anti-osteoclastogenic activity of GMI may extend our understanding of molecular mechanisms underlying biological activities and pharmacological use of G. lucidum as a traditional anti-osteoporotic medicine.
Insights
Ganomycin I (GMI) inhibits osteoclast formation by suppressing key signaling pathways, offering potential for treating bone diseases like osteoporosis. This study clarifies GMI
Area of Science:
- Biochemistry and Molecular Biology
- Pharmacology
- Immunology
Background:
- Excessive osteoclast activity is linked to bone diseases like osteoporosis and rheumatoid arthritis.
- Ganoderma lucidum mushroom yields Ganomycin I (GMI), a compound with known health benefits.
- The precise impact of GMI on osteoclastogenesis remains largely uncharacterized.
Purpose of the Study:
- To investigate the effects of Ganomycin I (GMI) on osteoclast formation.
- To elucidate the molecular mechanisms underlying GMI's action on osteoclastogenesis.
- To assess GMI's potential in managing bone-related disorders.
Main Methods:
- Mouse bone marrow-derived macrophages (BMMs) and RAW264.7 cells were treated with GMI.
- Evaluated cell viability, osteoclast differentiation, actin-ring formation, and bone resorption.
- Assessed GMI's impact on MAPK phosphorylation and transcription factors NFATc1 and c-Fos via Western blot analysis and RT-qPCR.
Main Results:
- GMI dose-dependently inhibited osteoclast differentiation, actin-ring formation, and bone resorption without affecting cell viability.
- GMI suppressed RANKL-induced phosphorylation of ERK, JNK, and p38 MAPKs.
- GMI reduced the expression of crucial transcription factors (c-Fos, NFATc1) and osteoclast marker genes (c-Src, CtsK, TRAP, MMP-9, OSCAR, DC-STAMP).
Conclusions:
- GMI attenuates osteoclast formation by inhibiting RANKL-mediated MAPKs and NFATc1 signaling pathways.
- The anti-osteoclastogenic activity of GMI supports its pharmacological use for osteoporosis.
- Findings enhance understanding of G. lucidum's traditional medicinal applications.
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