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Tumor necrosis factor-alpha induced expression of matrix metalloproteinase-9 through p21-activated kinase-1
Ling Zhou1, Chunli Yan, Roben G Gieling
1Keck School of Medicine, University of Southern California, Los Angeles, CA 90033, USA. lingzhou@usc.edu
Background:
Expressed in embryonic development, matrix metalloprotein-9 (MMP-9) is absent in most of developed adult tissues, but recurs in inflammation during tissue injury, wound healing, tumor formation and metastasis. Expression of MMP-9 is tightly controlled by extracellular cues including pro-inflammatory cytokines and extracellular matrix (ECM). While the pathologic functions of MMP-9 are evident, the intracellular signaling pathways to control its expression are not fully understood. In this study we investigated mechanism of cytokine induced MMP-9 with particular emphasis on the role of p21-activated-kinase-1 (PAK1) and the down stream signaling.
Results:
In response to TNF-alpha or IL-1alpha, PAK1 was promptly activated, as characterized by a sequential phosphorylation, initiated at threonine-212 followed by at threonine-423 in the activation loop of the kinase, in human skin keratinocytes, dermal fibroblasts, and rat hepatic stellate cells. Ectopic expression of PAK1 variants, but not p38 MAP kinase, impaired the TNF-alpha-induced MMP-9 expression, while other MMPs such as MMP-2, -3 and -14 were not affected. Activation of Jun N-terminal kinase (JNK) and NF-kappaB has been demonstrated to be essential for MMP-9 expression. Expression of inactive PAK1 variants impaired JNK but not NF-kappaB activation, which consequently suppressed the 5'-promoter activities of the MMP-9 gene. After the cytokine-induced phosphorylation, both ectopically expressed and endogenous PAK1 proteins were promptly accumulated even in the condition of suppressing protein synthesis, suggesting the PAK1 protein is stabilized upon TNF-alpha stimulation. Stabilization of PAK1 protein by TNF-alpha treatment is independent of the kinase catalytic activity and p21 GTPase binding capacities. In contrast to epithelial cells, mesenchymal cells require 3-dimensional type-I collagen in response to TNF-alpha to massively express MMP-9. The collagen effect is mediated, in part, by boost JNK activation in a way to cooperate the cytokine signaling.
Conclusion:
We identified a novel mechanism for MMP-9 expression in response to injury signals, which is mediated by PAK1 activation and stabilization leading JNK activation.
Insights
Matrix metalloprotein-9 (MMP-9) expression in response to injury signals is controlled by p21-activated kinase-1 (PAK1). PAK1 activation and stabilization lead to Jun N-terminal kinase (JNK) activation, a key step in MMP-9 induction.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Matrix metalloprotein-9 (MMP-9) is crucial in embryonic development and reappears during inflammation, tissue injury, and cancer.
- While MMP-9's pathological roles are known, the intracellular signaling pathways regulating its expression remain incompletely understood.
- This study focuses on understanding cytokine-induced MMP-9 expression, particularly the involvement of p21-activated kinase-1 (PAK1) and downstream signaling.
Purpose of the Study:
- To investigate the mechanism of cytokine-induced MMP-9 expression.
- To elucidate the role of p21-activated kinase-1 (PAK1) in regulating MMP-9.
- To identify downstream signaling pathways involved in MMP-9 induction.
Main Methods:
- Investigated PAK1 activation via phosphorylation in response to TNF-alpha or IL-1alpha in various cell types.
- Utilized ectopic expression of PAK1 variants to assess impact on MMP-9 expression.
- Examined the effects of PAK1 on Jun N-terminal kinase (JNK) and NF-kappaB activation.
- Studied PAK1 protein stabilization under cytokine stimulation.
- Assessed the role of 3D type-I collagen in mesenchymal cell MMP-9 expression.
Main Results:
- TNF-alpha and IL-1alpha promptly activated PAK1 through sequential phosphorylation in keratinocytes, fibroblasts, and hepatic stellate cells.
- Ectopic PAK1 variants, but not p38 MAP kinase, inhibited TNF-alpha-induced MMP-9 expression without affecting other MMPs.
- Inactive PAK1 variants impaired JNK activation, suppressing MMP-9 gene promoter activity, while NF-kappaB activation remained unaffected.
- PAK1 protein accumulated upon cytokine stimulation, indicating stabilization independent of kinase activity or GTPase binding.
- Mesenchymal cells require 3D type-I collagen for robust MMP-9 expression in response to TNF-alpha, which involves enhanced JNK activation.
Conclusions:
- A novel mechanism for MMP-9 expression in response to injury signals has been identified.
- This mechanism involves PAK1 activation and stabilization.
- PAK1 activation and stabilization lead to JNK activation, which is essential for MMP-9 induction.
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