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多形核中性粒细胞上的低亲和力FcγRIIa和FcγRIIIb受CD45磷酸酶的差异性调控。

The low affinity Fc gamma RIIa and Fc gamma RIIIb on polymorphonuclear neutrophils are differentially regulated by CD45 phosphatase.

作者信息

Hoffmeyer F, Witte K, Gebhardt U, Schmidt R E

机构信息

Department of Medicine, Hannover Medical School, Germany.

出版信息

J Immunol. 1995 Oct 15;155(8):4016-23.

PMID:7561111
Abstract

Stimulation of human polymorphonuclear neutrophils through ligation and cross-linking of the low affinity Fc gamma RIIa and Fc gamma RIIIb using mAb Fab and F(ab')2 fragments led to transient intracellular calcium mobilization and activation of the respiratory burst. Fc gamma RIIIb engagement resulted in a different pattern of intracellular calcium flux, and induction of the respiratory burst was significantly more effective than in the case of Fc gamma RIIa. These data demonstrate that the capacity of Fc gamma RIIIb to transduce transmembrane signals itself contributes to full cell activation. Treatment with a mAb F(ab')2 fragment recognizing CD45 phosphatase suppressed Fc gamma R-induced calcium mobilization in a dose-dependent manner. An ongoing intracellular calcium mobilization was immediately terminated when activation was followed by co-cross-linking Fc gamma R and CD45. This suggests that the initial steps of Fc gamma R signal transduction pathways are influenced by the state of tyrosine phosphorylation. Combined cross-linking of both receptors, however, was hardly susceptible to CD45. Also, inhibition of respiratory burst by CD45 in the case of Fc gamma RIIIb was minimal compared with that for Fc gamma RIIa. Signal transduction pathways of low affinity Fc gamma RIIa and Fc gamma RIIIb are differentially regulated by CD45, underlining the essential function of Fc gamma R-mediated tyrosine phosphorylation in polymorphonuclear neutrophil activation.

摘要

使用单克隆抗体Fab和F(ab')2片段连接并交联低亲和力FcγRIIa和FcγRIIIb刺激人多形核中性粒细胞,导致细胞内钙瞬态动员和呼吸爆发激活。FcγRIIIb的结合导致细胞内钙通量的不同模式,并且呼吸爆发的诱导比FcγRIIa的情况明显更有效。这些数据表明,FcγRIIIb转导跨膜信号的能力本身有助于细胞的完全激活。用识别CD45磷酸酶的单克隆抗体F(ab')2片段处理以剂量依赖性方式抑制FcγR诱导的钙动员。当FcγR和CD45共同交联激活后,持续的细胞内钙动员立即终止。这表明FcγR信号转导途径的初始步骤受酪氨酸磷酸化状态的影响。然而,两种受体的联合交联对CD45几乎不敏感。此外,与FcγRIIa相比,CD45对FcγRIIIb情况下呼吸爆发的抑制作用最小。低亲和力FcγRIIa和FcγRIIIb的信号转导途径受CD45的差异调节,强调了FcγR介导的酪氨酸磷酸化在多形核中性粒细胞激活中的重要作用。

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