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Activation and Inhibition of Human Matrix Metalloproteinase-9 (MMP9) by HOCl, Myeloperoxidase and Chloramines
Yihe Wang1, Christine Y Chuang1, Clare L Hawkins1
1Department of Biomedical Sciences, Panum Institute, University of Copenhagen, 2200 Copenhagen, Denmark.
Abstract:
Matrix metalloproteinase-9 (MMP9, gelatinase B) plays a key role in the degradation of extracellular-matrix (ECM) proteins in both normal physiology and multiple pathologies, including those linked with inflammation. MMP9 is excreted as an inactive proform (proMMP9) by multiple cells, and particularly neutrophils. The proenzyme undergoes subsequent processing to active forms, either enzymatically (e.g., via plasmin and stromelysin-1/MMP3), or via the oxidation of a cysteine residue in the prodomain (the "cysteine-switch"). Activated leukocytes, including neutrophils, generate O2- and H2O2 and release myeloperoxidase (MPO), which catalyzes hypochlorous acid (HOCl) formation. Here, we examine the reactivity of HOCl and a range of low-molecular-mass and protein chloramines with the pro- and activated forms of MMP9. HOCl and an enzymatic MPO/H2O2/Cl- system were able to generate active MMP9, as determined by fluorescence-activity assays and gel zymography. The inactivation of active MMP9 also occurred at high HOCl concentrations. Low (nM-low μM) concentrations of chloramines formed by the reaction of HOCl with amino acids (taurine, lysine, histidine), serum albumin, ECM proteins (laminin and fibronectin) and basement membrane extracts (but not HEPES chloramines) also activate proMMP9. This activation is diminished by the competitive HOCl-reactive species, methionine. These data indicate that HOCl-mediated oxidation and MMP-mediated ECM degradation are synergistic and interdependent. As previous studies have shown that modified ECM proteins can also stimulate the cellular expression of MMP proteins, these processes may contribute to a vicious cycle of increasing ECM degradation during disease development.
Insights
Hypochlorous acid (HOCl) activates matrix metalloproteinase-9 (MMP9) by oxidizing its prodomain. This HOCl-mediated activation of MMP9 and MMP9-mediated extracellular matrix degradation are interdependent, potentially creating a cycle of disease progression.
Area of Science:
- Biochemistry
- Cell Biology
- Pathology
Background:
- Matrix metalloproteinase-9 (MMP9) is crucial for extracellular matrix (ECM) degradation in physiological and pathological conditions, particularly inflammation.
- MMP9 is secreted as an inactive proenzyme (proMMP9) and activated through enzymatic cleavage or cysteine-switch oxidation.
- Activated leukocytes produce reactive oxygen species and myeloperoxidase (MPO), leading to hypochlorous acid (HOCl) formation.
Purpose of the Study:
- To investigate the reactivity of HOCl and chloramines with proMMP9 and activated MMP9.
- To determine the role of HOCl in MMP9 activation and its interplay with ECM degradation.
Main Methods:
- Utilized fluorescence-activity assays and gel zymography to assess MMP9 activity.
- Examined the effects of HOCl and various chloramines (formed from amino acids, proteins, and ECM components) on proMMP9 activation.
- Investigated the influence of methionine on HOCl-mediated activation.
Main Results:
- HOCl and an MPO/H2O2/Cl- system effectively generated active MMP9.
- Low concentrations of HOCl-derived chloramines activated proMMP9, while high HOCl concentrations inactivated active MMP9.
- Activation of proMMP9 by chloramines was diminished by methionine, a competitive HOCl scavenger.
- Modified ECM proteins can stimulate cellular MMP expression, suggesting a feedback loop.
Conclusions:
- HOCl-mediated oxidation and MMP9-mediated ECM degradation are synergistic and interdependent processes.
- These findings suggest a potential vicious cycle where HOCl activation of MMP9 contributes to escalating ECM degradation during disease development.
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