Henson P M, Oades Z G
J Clin Invest. 1975 Oct;56(4):1053-61. doi: 10.1172/JCI108152.
Reaction of human neutrophils with aggregated immunoglobulin on nonphagocytosable surfaces results in secretion of granule enzymes (exocytosis of granules) and stimulation of glucose oxidation by the nexose monophosphate pathway (HMP). The role of HMP stimulation in the enzyme secretion and some requirements for the two neutrophil activities have been examined. It was found that (a) HMP stimulation could be selectively inhibited under conditions where release of granule enzymes remained unchanged or was enhanced, for example, by reduced glucose concentration or by 2-deoxyglucose. (b) Removal of Ca++ and addition of agents which increased the intracellular levels of cyclic AMP (cAMP), however, prevented both activities, while colchicine had greater inhibitory activity on HMP stimulation than upon secretion. (c) Neutrophils incubated in suspension with particulate aggregated gamma-globulin phagocytosed the particles and exhibited a stimulated HMP and released granule enzymes. In contrast, incubation in suspension with soluble aggregated gamma-globulin resulted in the stimulated HMP only. Granule evzymes were not liberated. 300-fold less soluble aggregates bound to a surface, however readily induced exocytosis of granules from adherent neutrophils. This demonstrates the importance of surface effects in the induction of secretion from neutrophils. Aggregated immunoglobulin reacting with neutrophil Fc receptors thus induces both degranulation (exocytosis) and increased HMP activity. The pathways leading to these events are separable although apparently sharing some common steps, including the initiating events.
人中性粒细胞与非吞噬性表面上的聚集免疫球蛋白反应会导致颗粒酶的分泌(颗粒的胞吐作用),并通过磷酸戊糖途径(HMP)刺激葡萄糖氧化。已对HMP刺激在酶分泌中的作用以及这两种中性粒细胞活性的一些要求进行了研究。结果发现:(a)在颗粒酶释放保持不变或增强的条件下,例如通过降低葡萄糖浓度或使用2-脱氧葡萄糖,HMP刺激可被选择性抑制。(b)去除Ca++并添加增加细胞内环磷酸腺苷(cAMP)水平的试剂,然而,会阻止这两种活性,而秋水仙碱对HMP刺激的抑制活性比对分泌的抑制活性更大。(c)与颗粒状聚集γ-球蛋白在悬浮液中孵育的中性粒细胞吞噬了颗粒,并表现出受刺激的HMP且释放了颗粒酶。相比之下,与可溶性聚集γ-球蛋白在悬浮液中孵育仅导致受刺激的HMP。颗粒酶未释放。然而,与表面结合的可溶性聚集体少300倍,但很容易诱导贴壁中性粒细胞的颗粒胞吐作用。这证明了表面效应在诱导中性粒细胞分泌中的重要性。与中性粒细胞Fc受体反应的聚集免疫球蛋白因此诱导脱颗粒(胞吐作用)和增加的HMP活性。导致这些事件的途径是可分离的,尽管显然共享一些共同步骤,包括起始事件。