Tisch D, Sharoni Y, Danilenko M, Aviram I
Department of Biochemistry, Tel-Aviv University, Israel.
Biochem J. 1995 Sep 1;310 ( Pt 2)(Pt 2):715-9. doi: 10.1042/bj3100715.
Detergent-mediated activation of the phagocyte superoxide-generating NADPH oxidase requires the participation of at least four proteins: the membrane-bound heterodimeric cytochrome b558 and three cytosolic components, p47-phox, p67-phox and a Rac1/Rac2 protein. Peptides corresponding to sequences of different subunits of NADPH oxidase have been used as probes of the mechanism and sequence of assembly of the active complex. In the present study effects of mastoparans on activation of NADPH oxidase were investigated. Mastoparans are wasp venom cationic amphiphilic tetradecapeptides capable of modulation of various cellular activities. Natural mastoparans, as well as several synthetic mastoparan analogues, unrelated to oxidase components, blocked activation of the oxidase in the cell-free system (EC50 = 1.5 microM) and in guanosine 5'-[gamma-thio]triphosphate (GTP[S])/ATP-stimulated neutrophils permeabilized with streptolysin O. In the cell-free system the effect was not relieved by raising the detergent concentration and could not be ascribed to changes in critical micellar concentration values of the activating SDS or arachidonate. Chromatography of neutrophil cytosol on an immobilized mastoparan column suggested interaction of cytosolic p47-phox and p67-phox with the peptide. In spite of this interaction mastoparan did not interfere with translocation of p47-phox and p67-phox to the cell membranes.
去污剂介导的吞噬细胞超氧化物生成型NADPH氧化酶的激活至少需要四种蛋白质的参与:膜结合异二聚体细胞色素b558和三种胞质成分,即p47-吞噬氧化蛋白、p67-吞噬氧化蛋白和一种Rac1/Rac2蛋白。与NADPH氧化酶不同亚基序列相对应的肽已被用作活性复合物组装机制和序列的探针。在本研究中,研究了蜂毒肽对NADPH氧化酶激活的影响。蜂毒肽是黄蜂毒液中的阳离子两亲性十四肽,能够调节多种细胞活性。天然蜂毒肽以及几种与氧化酶成分无关的合成蜂毒肽类似物,在无细胞系统(EC50 = 1.5 microM)和用链球菌溶血素O通透的鸟苷5'-[γ-硫代]三磷酸(GTP[S])/ATP刺激的中性粒细胞中,均可阻断氧化酶的激活。在无细胞系统中,提高去污剂浓度并不能消除这种作用,且这种作用不能归因于激活剂十二烷基硫酸钠(SDS)或花生四烯酸盐临界胶束浓度值的变化。中性粒细胞胞质在固定化蜂毒肽柱上的色谱分析表明,胞质中的p47-吞噬氧化蛋白和p67-吞噬氧化蛋白与该肽存在相互作用。尽管存在这种相互作用,但蜂毒肽并不干扰p47-吞噬氧化蛋白和p67-吞噬氧化蛋白向细胞膜的转位。