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Published on: January 7, 2019
Palmitate-Induced MMP-9 Expression in the Human Monocytic Cells is Mediated through the TLR4-MyD88 Dependent
Sardar Sindhu1, Areej Al-Roub, Merin Koshy
1Immunology & Innovative Cell therapy Unit, Dasman Diabetes Institute, Kuwait.
Background/Aims:
Obese individuals are known to have increased Matrix metalloproteinase (MMP)-9 plasma levels and MMP-9 is reported to play an important role in obesity-associated adipose tissue inflammation. Since in obesity, the levels of circulatory saturated free fatty acid (FFA) palmitate (palimitic acid) are increased and modulate the expression of inflammatory mediators, the role of palmitate in the regulation of MMP-9 remains unclear.
Methods:
Human monocytic cell line THP-1 and primary monocytes were stimulated with palmitate and TNF-α (positive control). MMP-9 expression was assessed with real time RT-PCR and ELISA. Signaling pathways were studied by using THP-1-XBlue™ cells, THP-1-XBlue™-defMyD cells, anti-TLR4 mAb and TLR4 siRNA. Phosphorylation of NF-kB and c-Jun was analyzed by Western blotting.
Results:
Here, we provide the evidence that palmitate induces MMP-9 expression at both mRNA (THP-1: 6.8 ± 1.2 Fold; P = 0.01; Primary monocytes: 5.9 ± 0.7 Fold; P = 0.0003) and protein (THP1: 1116 ±14 pg/ml; P<0.001; Primary monocytes: 1426 ± 13.8; P = 0.0005) levels in human monocytic cells. Palmitate-induced MMP-9 secretion was markedly suppressed by neutralizing anti-TLR-4 antibody (P < 0.05). Furthermore, genetic silencing of TLR4 by siRNA also significantly abrogated the palmitate-induced up-regulation of MMP-9. Additionally, MyD88-/- THP-1 cells did not express MMP-9 in response to palmitate treatment. Increased NF-κB/AP-1 activity (P<0.05) was also observed in palmitate-treated THP-1 cells.
Conclusion:
Altogether, these results show that palmitate induces TLR4-dependent activation of MMP-9 gene expression, which requires the recruitment of MyD88 leading to activation of NF-kB/AP-1 transcription factors. Thus, our findings suggest that the palmitate-induced MMP-9 secretion might be an underlying mechanism of its increased levels in obesity and related metabolic inflammation.
Insights
Palmitate, a fatty acid elevated in obesity, increases Matrix metalloproteinase (MMP)-9 expression in human monocytes via Toll-like receptor 4 (TLR4) signaling. This pathway contributes to obesity-related inflammation.
Area of Science:
- Immunology
- Metabolic Research
- Molecular Biology
Background:
- Obesity is linked to elevated Matrix metalloproteinase (MMP)-9 plasma levels and adipose tissue inflammation.
- Circulating saturated free fatty acid (FFA) palmitate increases in obesity and influences inflammatory mediators.
- The specific role of palmitate in regulating MMP-9 expression in obesity remained unclear.
Purpose of the Study:
- To investigate the role of palmitate in regulating MMP-9 expression in human monocytic cells.
- To elucidate the signaling pathways involved in palmitate-induced MMP-9 regulation.
- To determine the contribution of Toll-like receptor 4 (TLR4) in this process.
Main Methods:
- Human monocytic cell line THP-1 and primary monocytes were stimulated with palmitate.
- MMP-9 expression was quantified using real-time RT-PCR and ELISA.
- Signaling pathways involving TLR4, MyD88, NF-κB, and AP-1 were analyzed using genetic and antibody-based approaches.
Main Results:
- Palmitate significantly induced MMP-9 expression at both mRNA and protein levels in human monocytes.
- Palmitate-induced MMP-9 secretion was suppressed by anti-TLR4 antibody and TLR4 siRNA.
- MyD88-deficient cells showed no MMP-9 induction by palmitate, and NF-κB/AP-1 activity increased.
Conclusions:
- Palmitate induces MMP-9 gene expression in a TLR4-dependent manner.
- MyD88 recruitment and subsequent activation of NF-κB/AP-1 transcription factors are crucial for this induction.
- Palmitate-induced MMP-9 secretion may be a key mechanism underlying obesity-associated metabolic inflammation.
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