Abstract

The ability of the major neutrophil-derived lipoxygenase metabolites of arachidonic acid to increase the rate of 45Ca influx in rabbit neutrophils was examined. The results obtained demonstrate that (5S),(12R)-dihydroxy-6,8,11,14-(cis,trans,trans,cis)-eicosatetraenoic acid (leukotriene B4) is the most active of the arachidonic acid metabolites. The activity of leukotriene B4 is highly stereospecific in that its three nonenzymatically derived isomers are essentially inactive. The omega-hydroxylation of leukotriene B4 results in a compound that is nearly as active as leukotriene B4 as far as its ability to stimulate calcium influx and neutrophil aggregation while being a much weaker secretagogue. The further conversion of leukotriene B4 into a dicarboxylic acid removes all detectable biological activity. 5,6-Oxido-7,9,11,14-eicosatetraenoic acid (leukotriene A4) methyl ester was also found to increase the rate of calcium influx, while the degradation products of native leukotriene A4 were essentially inactive. These results demonstrate that a close correlation exists between the ability of the various lipoxygenase products to alter calcium homeostasis in rabbit neutrophils and their biological activities.

Highlights

  • B4 is 2 to 3 orders of magnitude more potent as a neutrophil stimulus than are the mono-HETE [6,7,8,9,10,11]

  • The second messenger role of calcium, leukotriene B4has been found to increase the intracellular level of exchangeable c d

  • The results obtaineddemonstratethat(5S),(12R)-dihydroxy-6,8,11,14-(cis,tmns,trans,cis)-eicosatetraenoic acidis the most active of the arachilites) which is responsible for the biological activities of leukotriene B4, 2) imply that a specific receptor site exists for leukotriene B4 in neutrophils, and 3) further strengthen the hypothesis that the biological activities of leukotriene B4are mediated by its ability to increase the intracellular levels of calcium

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Summary

Homeostasis in Neutrophils

B4 is 2 to 3 orders of magnitude more potent as a neutrophil stimulus than are the mono-HETE [6,7,8,9,10,11].

CORRELATION WITH FUNCTIONAL ACTIVITY*
MATERIALS AND METHODS
RESULTS AND DISCUSSION
LYSOSOM AEL N Z Y M ER ELEASE
Leukotriene Bq and C:alcium Mobilization
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