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Chondroprotective effects of glucosamine involving the p38 MAPK and Akt signaling pathways
Yi-Cheng Lin1, Yu-Chih Liang, Ming-Thau Sheu
1Department of Orthopedics, Mackay Memorial Hospital, Taipei, Taiwan, ROC.
Abstract:
The purpose of the present study was to elucidate the possible signal transduction pathway involved in the underlying mechanism of glucosamine (GLN)'s influence on the gene expression of matrix metalloproteinases (MMPs) in chondrocytes stimulated with IL-1beta. Using chondrosarcoma cells stimulated with IL-1beta, the effects of GLN on the mRNA and protein levels of MMP-3, the activation of JNK, ERK, p38, NF-kappaB, and AP-1, the nuclear translocation of NF-kappaB/Rel family members, and PI3-kinase/Akt activation were studied. GLN inhibited the expression and the synthesis of MMP-3 induced by IL-1beta, and that inhibition was mediated at the level of transcription involving both the NF-kappaB and AP-1 transcription factors. Translocation of NF-kappaB was reduced by GLN as a result of the inhibition of IkappaB degradation. A slightly synergistic effect on the activation of AP-1 induced by IL-1beta was shown in the presence of GLN. Among MAPK pathways involved in the transcriptional regulation of AP-1, phosphorylation of JNK and ERK was found to increase with the presence of GLN under IL-1beta treatment, while that for p38 decreased. It was also found that GLN alone, but also synergistically with IL-1beta, was able to activate the Akt pathway. The requirements of NF-kappaB translocation and p38 activity are indispensably involved in the induction of MMP-3 expression in chondrosarcoma cells stimulated by IL-1beta. Inhibition of the p38 pathway in the presence of GLN substantially explains the chondroprotective effect of GLN on chondrocytes that regulate COX-2 expression, PGE(2) synthesis, and NO expression and synthesis. The chondroprotective effect of GLN through the decrease in MMP-3 production and stimulation of proteoglycan synthesis may follow another potential signaling pathway of Akt.
Insights
Glucosamine (GLN) inhibits interleukin-1 beta (IL-1beta)-induced matrix metalloproteinases (MMPs) in chondrocytes by modulating NF-kappaB and AP-1 pathways. This suggests GLN
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Interleukin-1 beta (IL-1beta) stimulates matrix metalloproteinases (MMPs) in chondrocytes, contributing to cartilage degradation.
- Glucosamine (GLN) is investigated for its potential chondroprotective effects.
- Understanding the signal transduction pathways involved is crucial for elucidating GLN's mechanism of action.
Purpose of the Study:
- To elucidate the signal transduction pathway of glucosamine (GLN) in regulating matrix metalloproteinases (MMPs) gene expression in chondrocytes stimulated by IL-1beta.
- To investigate GLN's effects on key signaling molecules including NF-kappaB, AP-1, MAPKs, and Akt.
- To determine the role of these pathways in the chondroprotective effects of GLN.
Main Methods:
- Chondrosarcoma cells were stimulated with IL-1beta.
- Effects of GLN on MMP-3 mRNA and protein levels were assessed.
- Activation of JNK, ERK, p38, NF-kappaB, AP-1, and PI3-kinase/Akt pathways were analyzed, including nuclear translocation of NF-kappaB.
Main Results:
- GLN inhibited IL-1beta-induced MMP-3 expression and synthesis at the transcriptional level via NF-kappaB and AP-1.
- GLN reduced NF-kappaB translocation by inhibiting IkappaB degradation and modulated MAPK pathways (JNK, ERK, p38).
- GLN activated the Akt pathway, alone and synergistically with IL-1beta, and inhibition of p38 pathway explained GLN's chondroprotective effects.
Conclusions:
- GLN exerts chondroprotective effects by inhibiting MMP-3 production through modulation of NF-kappaB, AP-1, and p38 signaling pathways.
- The Akt pathway may represent another signaling mechanism for GLN's chondroprotective actions, including proteoglycan synthesis.
- Understanding these pathways provides insight into the therapeutic potential of GLN in cartilage diseases.
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