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Published on: August 16, 2013
Myeloperoxidase mediates neutrophil activation by association with CD11b/CD18 integrins
Denise Lau1, Hanke Mollnau, Jason P Eiserich
1Departments of Cardiology, Hepatobiliary Surgery, and Clinical Chemistry, University Hospital Hamburg-Eppendorf, 20246 Hamburg, Germany.
Abstract:
Recruitment and activation of polymorphonuclear neutrophils (PMNs) reflects a primary immunological response to invading pathogens and has also emerged as a hallmark of vascular inflammation. One of the principal enzymes released upon PMN activation is myeloperoxidase (MPO), a heme protein that not only generates cytotoxic oxidants but also impacts deleteriously on nitric oxide-dependent signaling cascades within the vasculature. Because MPO also associates with the membrane of PMN, we evaluated whether MPO could also function as an autocrine modulator of PMN activation. The extent of PMN membrane-associated MPO was elevated in patients with acute inflammatory vascular disease compared with healthy individuals. Isolated PMNs bound free MPO by a CD11b/CD18 integrin-dependent mechanism. PMNs exposed to MPO were characterized by increased tyrosine phosphorylation and p38 mitogen-activated protein kinase activation. Also, nuclear translocation of NFkappaBin PMN was enhanced after incubation with MPO, as was surface expression of CD11b. Binding of PMN to MPO-coated fibronectin surfaces amplified PMN degranulation, as evidenced by increased release of MPO and elastase. MPO also augmented PMN-dependent superoxide (O(2)(*-)) production, which was prevented by anti-CD11b antibodies, but not MPO inhibitors. Collectively, these results reveal that binding of MPO to CD11b/CD18 integrins stimulates PMN signaling pathways to induce PMN activation in a mechanism independent of MPO catalytic activity. These cytokine-like properties of MPO thus represent an additional dimension of the proinflammatory actions of MPO in vascular disease.
Insights
Myeloperoxidase (MPO) binds to immune cells, triggering their activation and promoting vascular inflammation. This binding stimulates signaling pathways, enhancing the inflammatory response in vascular disease.
Area of Science:
- Immunology
- Vascular Biology
- Biochemistry
Background:
- Polymorphonuclear neutrophils (PMNs) are key in immune responses and vascular inflammation.
- Myeloperoxidase (MPO) is released during PMN activation, generating oxidants and impairing nitric oxide signaling.
- MPO's association with PMN membranes suggests a potential autocrine role in PMN activation.
Purpose of the Study:
- To investigate whether MPO acts as an autocrine modulator of PMN activation.
- To determine the mechanism by which MPO influences PMN activation and function.
Main Methods:
- Quantified membrane-associated MPO in patients with vascular disease versus healthy individuals.
- Assessed MPO binding to isolated PMNs via CD11b/CD18 integrins.
- Measured PMN activation markers (tyrosine phosphorylation, p38 MAPK, NF-κB translocation, CD11b expression) after MPO exposure.
- Evaluated PMN degranulation and superoxide production on MPO-coated surfaces.
Main Results:
- Elevated membrane-associated MPO in patients with inflammatory vascular disease.
- PMNs bind MPO through CD11b/CD18 integrins.
- MPO exposure increases PMN tyrosine phosphorylation, p38 MAPK activation, NF-κB translocation, and CD11b expression.
- MPO enhances PMN degranulation and superoxide production, mediated by CD11b/CD18 binding, independent of MPO's catalytic activity.
Conclusions:
- MPO binding to CD11b/CD18 integrins on PMNs stimulates signaling pathways, inducing PMN activation.
- MPO exhibits cytokine-like properties, contributing to its pro-inflammatory actions in vascular disease.
- This MPO-mediated autocrine activation represents a novel mechanism in vascular inflammation.
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