Abstract

We reported previously that interleukin-13 (IL-13) induces tyrosine phosphorylation/activation of Jak2 and Tyk2 kinases and Stats 1, 3, 5, and 6 in primary human monocytes. We recently revealed that p38 MAPK-mediated serine phosphorylation of both Stat1 and Stat3 is required for the induction of 15-lipoxygenase (15-LO) expression by IL-13. In this study, we present data indicating that another serine/threonine kinase, PKCdelta, is also required for IL-13-induced 15-LO expression. PKCdelta, a member of the novel protein kinase C (PKC) subclass, was rapidly phosphorylated and activated upon exposure to IL-13. Treatment of cells with rottlerin, a PKCdelta inhibitor, blocked IL-13-induced 15-LO mRNA and protein expression, whereas Go6976, an inhibitor of the conventional PKC subclass, had no inhibitory effects. Down-regulation of cellular PKCdelta protein levels by PKCdelta-specific antisense oligodeoxyribonucleotides also inhibited 15-LO expression markedly. IL-13-induced 15-LO expression resulted in significant inhibition of synthesis of the potent chemotactic factor leukotriene B4, and that process was reversed by rottlerin, presumably through the blockage of PKCdelta-dependent 15-LO expression. Furthermore, our data demonstrate that IL-13-mediated activation of PKCdelta and p38 MAPK are independent pathways, because inhibition of one kinase activity had no effect on the other, suggesting that the two pathways act in parallel to regulate the downstream targets necessary for 15-LO expression. Inhibition of PKCdelta activation by rottlerin also markedly attenuated IL-13-induced Stat3 DNA binding activity. Our findings indicate that PKCdelta plays an important role in regulating IL-13-induced 15-LO expression in human monocytes and subsequently modulates the inflammatory responses mediated by 15-LO products.

Highlights

  • Th2 lymphocytes secrete IL-41 and IL-13, which have the unique ability to induce the expression of the lipid-oxidizing

  • These data suggest that PKC isoform(s) other than conventional PKCs (cPKCs) are required for IL13-induced 15-LO expression

  • Our previous studies indicated that the induction of 15-LO expression by IL-13 requires activation of Jak2 and Tyk2 tyrosine kinases [3] and that IL-13 induces tyrosine phosphorylation of selective Stat proteins [11]

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Summary

THE JOURNAL OF BIOLOGICAL CHEMISTRY

15954 –15960, 2004 Printed in U.S.A. Role of Protein Kinase C Isoforms in the Regulation of Interleukin13-induced 15-Lipoxygenase Gene Expression in Human Monocytes*. We reported previously that interleukin-13 (IL-13) induces tyrosine phosphorylation/activation of Jak and Tyk kinases and Stats 1, 3, 5, and 6 in primary human monocytes. Our findings indicate that PKC␦ plays an important role in regulating IL-13-induced 15-LO expression in human monocytes and subsequently modulates the inflammatory responses mediated by 15-LO products. In addition to its pro-inflammatory actions, 15-LO has been shown to suppress the inflammatory responses by inhibiting the production of the potent chemotactic factor LTB4 This process has been observed in several cell types, including human monocytes (8 –10). We investigated the role of PKC isoforms, PKC␦, in IL-13-induced 15-LO expression in primary human monocytes. In human monocytes and is independent of the p38 MAPK pathway

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