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Importance of MEK in neutrophil microbicidal responsiveness
G P Downey1, J R Butler, H Tapper
1Toronto Hospital, and Department of Medicine, University of Toronto, Ontario, Canada. gregory.downey@utoronto.ca
Abstract:
Exposure of neutrophils to inflammatory stimuli such as the chemoattractant FMLP leads to activation of responses including cell motility, the oxidative burst, and secretion of proteolytic enzymes. A signaling cascade involving sequential activation of Raf-1, mitogen-activated protein kinase (MEK), and extracellular signal regulated kinase (ERK) is also rapidly activated after agonist exposure. The temporal relationship between these events suggests that the kinases may be involved in triggering the effector functions, but direct evidence of a causal relationship is lacking. To assess the role of the MEK/ERK pathway in the activation of neutrophil responses, we studied the effects of PD098059, a potent and selective inhibitor of MEK. Preincubation of human neutrophils with 50 microM PD098059 almost completely (>90%) inhibited the FMLP-induced activation of MEK-1 and MEK-2, the isoforms expressed by neutrophils. This dose of PD098059 virtually abrogated chemoattractant-induced tyrosine phosphorylation and activation of ERK-1 and ERK-2, implying that MEKs are the predominant upstream activators of these mitogen-activated protein kinases. Pretreatment of neutrophils with the MEK antagonist inhibited the oxidative burst substantially and phagocytosis only moderately. In addition, PD098059 antagonized the delay of apoptosis induced by exposure to granulocyte-macrophage CSF. However, the effects of PD098059 were selective, as it failed to inhibit other responses, including chemoattractant-induced exocytosis of primary and secondary granules, polymerization of F-actin, chemotaxis, or activation of phospholipase A2. We conclude that MEK and ERK contribute to the activation of the oxidative burst and phagocytosis, and participate in cytokine regulation of apoptosis.
Insights
The MEK/ERK pathway is crucial for neutrophil responses like the oxidative burst and phagocytosis. Inhibiting this pathway with PD098059 selectively impacts these functions and apoptosis regulation.
Area of Science:
- Immunology
- Cell Signaling
Background:
- Neutrophils are key immune cells activated by inflammatory stimuli like FMLP.
- Activation involves cell motility, oxidative burst, and enzyme secretion.
- A signaling cascade including Raf-1, MEK, and ERK is rapidly activated.
Purpose of the Study:
- To investigate the role of the MEK/ERK pathway in neutrophil activation.
- To determine if MEK/ERK signaling causally links to neutrophil effector functions.
Main Methods:
- Used PD098059, a selective MEK inhibitor, on human neutrophils.
- Assessed inhibition of MEK-1/MEK-2, ERK-1/ERK-2 activation, and tyrosine phosphorylation.
- Evaluated effects on oxidative burst, phagocytosis, apoptosis, and other neutrophil functions.
Main Results:
- PD098059 (>90%) inhibited MEK-1/MEK-2 activation and downstream ERK-1/ERK-2 activation.
- MEK inhibition substantially reduced the oxidative burst and moderately affected phagocytosis.
- PD098059 also antagonized cytokine-induced delay of apoptosis.
Conclusions:
- MEK and ERK signaling are essential for oxidative burst and phagocytosis in neutrophils.
- The MEK/ERK pathway plays a role in regulating neutrophil apoptosis.
- PD098059 selectively inhibited specific neutrophil responses, highlighting pathway specificity.