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磷脂酶D介导中性粒细胞的Fcγ受体激活,并在高价免疫复合物和fMLP信号通路之间提供特异性。

Phospholipase D mediates Fc gamma receptor activation of neutrophils and provides specificity between high-valency immune complexes and fMLP signaling pathways.

作者信息

Gewirtz A T, Simons E R

机构信息

Department of Biochemistry, Boston University School of Medicine, Massachusetts 02118, USA.

出版信息

J Leukoc Biol. 1997 Apr;61(4):522-8. doi: 10.1002/jlb.61.4.522.

Abstract

Neutrophils phagocytize high-valency immune complexes (HIC) by an Fc gamma receptor-mediated mechanism, activating an oxidative burst and initiating degranulation. In contrast, neutrophils exhibit chemotaxis to N-formylated peptides [e.g., N-formyl-methionyl-leucyl-phenylalanine (fMLP)] and secrete far fewer oxidants or granule contents than neutrophils activated by HIC. However, if neutrophils are treated with cytochalasin B (CB) or permeabilized with streptolysin O, chemoattractant-induced neutrophil secretion is increased to a level beyond that observed in response to HIC. Because priming neutrophils with CB, or permeabilizing them, also augments activation of phospholipase D (PLD) in response to fMLP, we reasoned that, in intact (i.e., nonpermeabilized) unprimed neutrophils, PLD may participate in a signaling pathway specific to phagocytic stimuli such as HIC and hence may contribute to degranulation control. PLD activity in response to HIC and fMLP correlated closely with stimulus-induced azurophilic degranulation under a wide variety of experimental conditions, including compounds that abrogated or augmented stimulus-induced PLD action. PLD activation preceded, and appeared to be necessary for, azurophilic degranulation. These results suggest that PLD may play a central role in controlling azurophilic degranulation and provide signaling specificity between pathways activated by fMLP and HIC in intact neutrophils.

摘要

中性粒细胞通过Fcγ受体介导的机制吞噬高价免疫复合物(HIC),激活氧化爆发并引发脱颗粒。相比之下,中性粒细胞对N-甲酰化肽[例如,N-甲酰甲硫氨酰亮氨酰苯丙氨酸(fMLP)]表现出趋化性,并且与由HIC激活的中性粒细胞相比,分泌的氧化剂或颗粒内容物要少得多。然而,如果用细胞松弛素B(CB)处理中性粒细胞或用链球菌溶血素O使其通透化,趋化因子诱导的中性粒细胞分泌会增加到超过对HIC反应所观察到的水平。由于用CB预处理中性粒细胞或使其通透化,也会增强对fMLP反应时磷脂酶D(PLD)的激活,我们推测,在完整的(即未通透化的)未预处理的中性粒细胞中,PLD可能参与特定于吞噬刺激(如HIC)的信号通路,因此可能有助于脱颗粒控制。在包括消除或增强刺激诱导的PLD作用的化合物在内的各种实验条件下,对HIC和fMLP反应的PLD活性与刺激诱导的嗜天青颗粒脱颗粒密切相关。PLD激活先于嗜天青颗粒脱颗粒,并且似乎是其必要条件。这些结果表明,PLD可能在控制嗜天青颗粒脱颗粒中起核心作用,并在完整中性粒细胞中由fMLP和HIC激活的信号通路之间提供信号特异性。

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