Abstract

Elevation of the intracellular cAMP concentration in agonist-activated human neutrophils (PMN) leads to the concomitant inhibitions of arachidonic acid (AA) release, 5-lipoxygenase (5-LO) translocation, and leukotriene (LT) biosynthesis. We report herein that exogenous AA completely prevents cAMP-dependent inhibition of 5-LO translocation and LT biosynthesis in agonist-activated PMN. Moreover, the group IVA phospholipase A2 inhibitor pyrrophenone and the MEK inhibitor U-0126 inhibited AA release and 5-LO translocation in activated PMN, and these effects were also prevented by exogenous AA, demonstrating a functional link between AA release and 5-LO translocation. Polyunsaturated fatty acids of the C18 and C20 series containing at least three double bonds located from carbon 9 (or closer to the carboxyl group) were equally effective as AA in restoring 5-LO translocation in pyrrophenone-treated agonist-activated PMN. Importantly, experiments with the 5-LO-activating protein inhibitor MK-0591 and the intracellular Ca2+ chelator BAPTA-AM demonstrated that the AA-regulated 5-LO translocation is FLAP- and Ca2+-dependent. Finally, the redox and competitive 5-LO inhibitors L-685,015, L-739,010, and L-702,539 (but not cyclooxygenase inhibitors) efficiently substituted for AA to reverse the pyrrophenone inhibition of 5-LO translocation, indicating that the site of regulation of 5-LO translocation by AA is at or in the vicinity of the catalytic site. This report demonstrates that AA regulates the translocation of 5-LO in human PMN and unravels a novel mechanism of the cAMP-mediated inhibition of LT biosynthesis.

Highlights

  • LT biosynthesis has been investigated in many types of leukocytes over the past 25 years, the molecular mechanisms underlying the regulation of 5-LO activity are still incompletely understood

  • arachidonic acid (AA) Regulates 5-LO Translocation—We and others have shown that the inhibitory effect of elevated [cAMP]i on LT biosynthesis in PMNs correlates with inhibition of AA release (26 –30)

  • We demonstrated that the addition of 1–10 ␮M AA restores 5-LO translocation and LT biosynthesis in thapsigargin- or ligand-activated PMNs treated with the A2A receptor agonist CGS-21680, which otherwise efficiently blocks AA release and 5-LO translocation through elevation of [cAMP]i [18]

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Summary

Introduction

LT biosynthesis has been investigated in many types of leukocytes over the past 25 years, the molecular mechanisms underlying the regulation of 5-LO activity are still incompletely understood. The cPLA2␣ inhibitor pyrrophenone was used to block endogenous AA release and 5-LO translocation in fMLP-activated PMNs; in these conditions, the restoration of 5-LO translocation by exogenous fatty acids could be assessed without the interference of endogenous AA.

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