Ali A, Ford-Hutchinson A W, Nicholson D W
Department of Pharmacology and Therapeutics, McGill University, Montreal, Quebec, Canada.
J Immunol. 1994 Jul 15;153(2):776-88.
An eosinophilic substrain of HL-60 cells (HL-60#7) predominantly synthesized cysteinyl leukotrienes after stimulation with the calcium ionophore A23187. Activation of protein kinase C (PKC) by phorbol 12-myristate 13-acetate (PMA) specifically attenuated cysteinyl leukotriene production without affecting the biosynthesis of non-cysteinyl leukotrienes. The inhibition of cysteinyl leukotriene biosynthesis was prevented only by specific PKC inhibitors (staurosporine and bisindolylmaleimide) but not by inhibitors of tyrosine kinases (genistein, tyrphostin 47, and herbimycin A), protein kinase A (KT5720), or the oxidative burst (apocynin). Similar results were obtained when LTC4 synthase enzymatic activity was measured directly in the presence of saturating concentrations of exogenously added substrates. Therefore, the inhibitory effects of PKC activation on cysteinyl leukotriene formation in intact cells was attributable to effects on the LTC4 synthase enzyme. The mechanism of inhibition of LTC4 synthase by PKC activation was determined by kinetic analysis to be noncompetitive in both eosinophil-like HL-60#7 cells and monocytic THP-1 cells. Contrary to the effect of PKC activation on cysteinyl leukotriene biosynthesis, the formation of prostaglandin E2 and thromboxane B2 was elevated twofold to threefold after PMA treatment, which was prevented by the PKC inhibitor, staurosporine. We propose a regulatory model in which PKC activation shifts the profile of eicosanoid mediators produced by eosinophils from cysteinyl leukotrienes to prostanoids.
HL-60细胞的嗜酸性亚株(HL-60#7)在用钙离子载体A23187刺激后主要合成半胱氨酰白三烯。佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)激活蛋白激酶C(PKC)可特异性减弱半胱氨酰白三烯的产生,而不影响非半胱氨酰白三烯的生物合成。仅特异性PKC抑制剂(星形孢菌素和双吲哚马来酰胺)可阻止半胱氨酰白三烯生物合成的抑制,而酪氨酸激酶抑制剂(染料木黄酮、 tyrphostin 47和除莠霉素A)、蛋白激酶A(KT5720)或氧化爆发抑制剂(鱼藤酮)则不能。当在存在饱和浓度的外源添加底物的情况下直接测量LTC4合酶的酶活性时,也得到了类似的结果。因此,PKC激活对完整细胞中半胱氨酰白三烯形成的抑制作用归因于对LTC4合酶的影响。通过动力学分析确定,PKC激活对LTC4合酶的抑制机制在嗜酸性粒细胞样HL-60#7细胞和单核细胞THP-1细胞中均为非竞争性。与PKC激活对半胱氨酰白三烯生物合成的影响相反,PMA处理后前列腺素E2和血栓素B2的形成增加了两倍至三倍,PKC抑制剂星形孢菌素可阻止这种增加。我们提出了一种调节模型,其中PKC激活使嗜酸性粒细胞产生的类花生酸介质谱从半胱氨酰白三烯转变为前列腺素。