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CR3(巨噬细胞-1抗原,αMβ2,CD11b/CD18)与FcγRIII协同作用产生中性粒细胞呼吸爆发:对FcγRIII和酪氨酸磷酸化的需求

CR3 (Mac-1, alpha M beta 2, CD11b/CD18) and Fc gamma RIII cooperate in generation of a neutrophil respiratory burst: requirement for Fc gamma RIII and tyrosine phosphorylation.

作者信息

Zhou M J, Brown E J

机构信息

Division of Infectious Diseases, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Cell Biol. 1994 Jun;125(6):1407-16. doi: 10.1083/jcb.125.6.1407.

Abstract

Cooperation among plasma membrane receptors in activating signal transduction cascades is not well understood. For almost 20 years, it has been clear that when a particulate foreign body is opsonized with complement as well as IgG, the efficiency of IgG effector functions is markedly enhanced. However, the molecular mechanisms involved in cooperation between IgG Fc receptors and complement receptors have not been elucidated. In this work, we show that when human neutrophils (PMN) are plated on a surface coated with both anti-CR3 and anti-Fc gamma RIII antibodies, the respiratory burst which occurs is equivalent to that stimulated by anti-Fc gamma RII. The CR3 ligand iC3b is as effective as anti-CR3 for cooperating with anti-Fc gamma RIII in generation of a respiratory burst. The synergy between CR3 and Fc gamma RIII for activating the NADPH oxidase is abolished by Fab of anti-Fc gamma RII. Nonetheless, the observed synergy is not an artifact of unintended Fc gamma RII ligation, since (a) only this combination of antibodies works to generate H2O2; (b) coating plates with either of the antibodies alone cannot activate the respiratory burst at any dose; (c) LAD (CR3 deficient) cells, which are perfectly competent to mount a respiratory burst when Fc gamma RII is engaged, are incapable of activating the respiratory burst when adherent to wells coated with anti-Fc gamma RIII and anti-CR3; (d) direct engagement of Fc gamma RII activates the respiratory burst by a pathway pharmacologically distinguishable from the synergistic respiratory burst. Fc gamma RIII/CR3 synergy is abolished by cytochalasin B and herbimicin, suggesting that both the actin cytoskeleton and tyrosine phosphorylation are necessary for activation of the synergistic respiratory burst. Further analysis shows that CR3 and Fc gamma RIII have distinct roles in activation of this Fc gamma RII-dependent assembly of the NADPH oxidase. Ligation of CR3 is sufficient to lead to Fc gamma RII association with the actin cytoskeleton on the adherent PMN surface. Coligation of Fc gamma RIII is required for tyrosine phosphorylation of Fc gamma RII. These data are consistent with a model in which phosphorylation of Fc gamma RII or a closely associated substrate initiates activation of a signal transduction pathway leading to oxidase assembly. These are the first data to demonstrate a molecular mechanism for synergy between IgG Fc and complement receptors in activation of phagocyte effector functions.

摘要

质膜受体在激活信号转导级联反应中的协同作用尚未得到充分理解。近20年来,很明显,当颗粒性异物被补体和IgG调理后,IgG效应功能的效率会显著提高。然而,IgG Fc受体与补体受体之间协同作用的分子机制尚未阐明。在这项研究中,我们发现,当人中性粒细胞(PMN)接种在同时包被抗CR3和抗FcγRIII抗体的表面时,所产生的呼吸爆发等同于抗FcγRII刺激所产生的呼吸爆发。CR3配体iC3b在产生呼吸爆发方面与抗CR3协同作用时,与抗FcγRIII一样有效。抗FcγRII的Fab可消除CR3和FcγRIII在激活NADPH氧化酶方面的协同作用。尽管如此,观察到的协同作用并非意外的FcγRII连接的假象,因为:(a)只有这种抗体组合能产生H2O2;(b)单独用任何一种抗体包被平板,在任何剂量下都不能激活呼吸爆发;(c)LAD(CR3缺陷)细胞,当FcγRII被激活时能够完美地引发呼吸爆发,但当粘附于包被有抗FcγRIII和抗CR3的孔时,却无法激活呼吸爆发;(d)FcγRII的直接结合通过一条在药理学上与协同呼吸爆发可区分的途径激活呼吸爆发。细胞松弛素B和除草菌素可消除FcγRIII/CR3的协同作用,这表明肌动蛋白细胞骨架和酪氨酸磷酸化对于协同呼吸爆发的激活都是必需的。进一步分析表明,CR3和FcγRIII在激活这种依赖FcγRII的NADPH氧化酶组装过程中具有不同的作用。CR3的结合足以导致FcγRII与粘附的PMN表面的肌动蛋白细胞骨架结合。FcγRIII的共结合是FcγRII酪氨酸磷酸化所必需的。这些数据与一个模型一致,在该模型中,FcγRII或紧密相关底物的磷酸化启动了导致氧化酶组装的信号转导途径的激活。这些是首次证明IgG Fc与补体受体在激活吞噬细胞效应功能方面协同作用的分子机制的数据。

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