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Regulation of platelet-activating factor synthesis in human neutrophils by MAP kinases
Paul R S Baker1, John S Owen, Andrew B Nixon
1Department of Biochemistry, Wake Forest University School of Medicine, Winston-Salem, NC 27157-1016, USA.
Abstract:
Human neutrophils (PMN) are potentially a major source of platelet-activating factor (PAF) produced during inflammatory responses. The stimulated synthesis of PAF in PMN is carried out by a phospholipid remodeling pathway involving three enzymes: acetyl-CoA:lyso-PAF acetyltransferase (acetyltransferase), type IV phospholipase A(2) (cPLA(2)) and CoA-independent transacylase (CoA-IT). However, the coordinated actions and the regulatory mechanisms of these enzymes in PAF synthesis are poorly defined. A23187 has been widely used to activate the remodeling pathway, but it has not been shown how closely its actions mimic those of physiological stimuli. Here we address this important problem and compare responses of the three remodeling enzymes and PAF synthesis by intact cells. In both A23187- and N-formyl-methionyl-leucyl-phenylalanine (fMLP)-stimulated PMN, acetyltransferase activation is blocked by SB 203580, a p38 MAP kinase inhibitor, but not by PD 98059, which blocks activation of the ERKs. In contrast, either agent attenuated cPLA(2) activation. Correlating with these results, SB 203580 decreased stimulated PAF formation by 60%, whereas PD 98059 had little effect. However, the combination of both inhibitors decreased PAF formation to control levels. Although a role for CoA-IT in PAF synthesis is recognized, we did not detect activation of the enzyme in stimulated PMN. CoA-IT thus appears to exhibit full activity in resting as well as stimulated cells. We conclude that the calcium ionophore A23187 and the receptor agonist fMLP both act through common pathways to stimulate PAF synthesis, with p38 MAP kinase regulating acetyltransferase and supplementing ERK activation of cPLA(2).
Insights
Platelet-activating factor (PAF) synthesis in neutrophils involves key enzymes regulated by p38 MAP kinase and ERK pathways. Stimuli like A23187 and fMLP activate these pathways, impacting inflammatory responses.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Human neutrophils (PMN) are significant sources of platelet-activating factor (PAF) during inflammation.
- PAF synthesis involves a phospholipid remodeling pathway with acetyltransferase, cPLA(2), and CoA-IT.
- The regulation and coordination of these enzymes in PAF synthesis remain unclear.
Purpose of the Study:
- To compare the actions of A23187 and fMLP on PAF synthesis and remodeling enzymes in PMN.
- To elucidate the roles of p38 MAP kinase and ERK pathways in regulating PAF synthesis.
Main Methods:
- Stimulation of PMN with A23187 or fMLP.
- Inhibition of p38 MAP kinase (SB 203580) and ERK (PD 98059) pathways.
- Measurement of enzyme activities and PAF synthesis.
Main Results:
- Acetyltransferase activation was inhibited by SB 203580 but not PD 98059.
- cPLA(2) activation was attenuated by both SB 203580 and PD 98059.
- SB 203580 significantly reduced PAF formation, while PD 98059 had minimal effect.
- CoA-IT activity was detected in both resting and stimulated PMN, suggesting it is not regulated.
- A23187 and fMLP utilize common pathways to stimulate PAF synthesis.
Conclusions:
- p38 MAP kinase regulates acetyltransferase activity in PAF synthesis.
- ERK pathways supplement cPLA(2) activation.
- Both A23187 and fMLP activate common signaling pathways leading to PAF synthesis in neutrophils.