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VI型钙离子非依赖性磷脂酶A2参与酵母聚糖刺激的巨噬细胞样P388D1细胞中蛋白激酶C依赖性花生四烯酸的释放。

Involvement of group VI Ca2+-independent phospholipase A2 in protein kinase C-dependent arachidonic acid liberation in zymosan-stimulated macrophage-like P388D1 cells.

作者信息

Akiba S, Mizunaga S, Kume K, Hayama M, Sato T

机构信息

Department of Pathological Biochemistry, Kyoto Pharmaceutical University, Misasagi, Yamashina-ku, Kyoto 607-8414, Japan.

出版信息

J Biol Chem. 1999 Jul 9;274(28):19906-12. doi: 10.1074/jbc.274.28.19906.

Abstract

We investigated the possible involvement of group VI Ca2+-independent phospholipase A2 (iPLA2) in arachidonic acid (AA) liberation in zymosan-stimulated macrophage-like P388D1 cells. Zymosan-induced AA liberation was markedly inhibited by methyl arachidonoyl fluorophosphonate, a dual inhibitor of group IV cytosolic phospholipase A2 (cPLA2) and iPLA2. We found that a relatively specific iPLA2 inhibitor, bromoenol lactone, significantly decreased the zymosan-induced AA liberation in parallel with the decrease in iPLA2 activity, without an effect on diacylglycerol formation. Consistent with this, attenuation of iPLA2 activity by a group VI iPLA2 antisense oligonucleotide resulted in a decrease in zymosan-induced prostaglandin D2 generation. These findings suggest that zymosan-induced AA liberation may be, at least in part, mediated by iPLA2. A protein kinase C (PKC) inhibitor diminished zymosan-induced AA liberation, while a PKC activator, phorbol 12-myristate 13-acetate (PMA), enhanced the liberation. Bromoenol lactone suppressed the PMA-enhanced AA liberation without any effect on PMA-induced PKC activation. Down-regulation of PKCalpha on prolonged exposure to PMA also decreased zymosan-induced AA liberation. Under these conditions, the remaining AA liberation was insensitive to bromoenol lactone. Furthermore, the PKC depletion suppressed increases in iPLA2 proteins and the activity in the membrane fraction of zymosan-stimulated cells. In contrast, the zymosan-induced increases in iPLA2 proteins and the activity in the fraction were facilitated by simultaneous addition of PMA. Although intracellular Ca2+ depletion prevented zymosan-induced AA liberation, the translocation of PKCalpha to membranes was also inhibited. Taken together, we propose that zymosan may stimulate iPLA2-mediated AA liberation, probably through a PKC-dependent mechanism.

摘要

我们研究了Ⅵ型钙离子非依赖性磷脂酶A2(iPLA2)在酵母聚糖刺激的巨噬细胞样P388D1细胞中花生四烯酸(AA)释放过程中可能发挥的作用。甲基花生四烯酰氟磷酸酯是Ⅳ型胞质磷脂酶A2(cPLA2)和iPLA2的双重抑制剂,它能显著抑制酵母聚糖诱导的AA释放。我们发现,一种相对特异性的iPLA2抑制剂——溴代烯醇内酯,能显著降低酵母聚糖诱导的AA释放,同时iPLA2活性也随之降低,且对二酰基甘油的形成没有影响。与此一致的是,Ⅵ型iPLA2反义寡核苷酸使iPLA2活性减弱,导致酵母聚糖诱导的前列腺素D2生成减少。这些发现表明,酵母聚糖诱导的AA释放可能至少部分是由iPLA2介导的。蛋白激酶C(PKC)抑制剂能减少酵母聚糖诱导的AA释放,而PKC激活剂佛波醇12 - 肉豆蔻酸酯13 - 乙酸酯(PMA)则能增强这种释放。溴代烯醇内酯能抑制PMA增强的AA释放,但对PMA诱导的PKC激活没有任何影响。长时间暴露于PMA会使PKCα下调,这也会减少酵母聚糖诱导的AA释放。在这些条件下,剩余的AA释放对溴代烯醇内酯不敏感。此外,PKC缺失会抑制酵母聚糖刺激细胞的膜组分中iPLA2蛋白的增加和活性。相反,同时添加PMA会促进酵母聚糖诱导的该组分中iPLA2蛋白和活性的增加。尽管细胞内钙离子耗竭会阻止酵母聚糖诱导的AA释放,但PKCα向膜的转位也会受到抑制。综上所述,我们认为酵母聚糖可能通过一种PKC依赖性机制刺激iPLA2介导的AA释放。

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