Bender J G, McPhail L C, Van Epps D E
J Immunol. 1983 May;130(5):2316-23.
NADPH oxidase activity in particulate fractions from human neutrophils stimulated with phorbol myristate acetate (PMA) or opsonized zymosan was enhanced by prior exposure of the neutrophils to chemotactic factors. Enhanced activity was seen measuring both NADPH-dependent chemiluminescence and superoxide anion production. Enhancement was observed to be both time and dose dependent with several chemotactic stimuli, including casein, N-formyl-methionyl-leucyl-phenylalanine (f-MLP), and C5a. F-MLP and C5a showed similar patterns, with peak enhancement occurring within 2 to 15 min of preincubation and lasting up to 1 hr. In contrast, enhancement of PMA-stimulated oxidase activity by casein was more gradual and sustained, lasting up to 2 hr. Fractions from cells treated only with chemotactic factors and not stimulated with PMA showed no oxidase activity. Kinetic studies of this enhanced activity show that chemotactic factors induce increases in Vmax values but do not significantly alter Km values for the oxidase. Further experiments using agents that modulate degranulation suggest that enzyme release is not involved in this enhancement. These data suggest that pretreatment with chemotactic factors results in an increase in the amount of activated oxidase in membrane fractions obtained from PMA-stimulated neutrophils. This alteration of NADPH oxidase activity provides a subcellular basis for the enhanced bactericidal activity and increased oxidative metabolism seen in neutrophils treated with chemotactic factors.
用佛波酯(PMA)或调理酵母聚糖刺激人中性粒细胞后,其颗粒组分中的NADPH氧化酶活性会因中性粒细胞预先暴露于趋化因子而增强。通过测量NADPH依赖性化学发光和超氧阴离子生成,可观察到活性增强。在几种趋化刺激物(包括酪蛋白、N-甲酰甲硫氨酰亮氨酰苯丙氨酸(f-MLP)和C5a)作用下,观察到增强作用具有时间和剂量依赖性。f-MLP和C5a表现出相似的模式,预孵育2至15分钟内出现增强峰值,并持续长达1小时。相比之下,酪蛋白对PMA刺激的氧化酶活性的增强更为缓慢且持续时间更长,可达2小时。仅用趋化因子处理而未用PMA刺激的细胞组分未显示氧化酶活性。对这种增强活性的动力学研究表明,趋化因子会导致Vmax值增加,但不会显著改变氧化酶的Km值。使用调节脱颗粒的试剂进行的进一步实验表明,酶释放与这种增强作用无关。这些数据表明,用趋化因子预处理会导致从PMA刺激的中性粒细胞获得的膜组分中活化氧化酶的量增加。NADPH氧化酶活性的这种改变为在用趋化因子处理的中性粒细胞中观察到的增强的杀菌活性和增加的氧化代谢提供了亚细胞基础。