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通过FcγRI短暂激活NADPH氧化酶。氧化酶失活先于交联受体的内化。

Transient activation of the NADPH oxidase through Fc gamma RI. Oxidase deactivation precedes internalization of cross-linked receptors.

作者信息

Pfefferkorn L C, Fanger M W

机构信息

Department of Microbiology, Dartmouth Medical School, Hanover, NH 03756.

出版信息

J Immunol. 1989 Oct 15;143(8):2640-9.

PMID:2551966
Abstract

It is well known that Fc gamma R mediate the rapid release of agents of inflammation and, in addition, play an important role in the uptake of stimulatory antibody complexes. Activation of the FcR for human IgG1 (Fc gamma RI) on human monocytic cells triggers a transient activation of the NADPH oxidase. In this study, we tested the possibility that transience of the NADPH oxidase activation might have been the result of rapid internalization of cross-linked Fc gamma RI. Stimulatory receptor moieties were formed by cross-linking Fc gamma RI with receptor-specific mAb that are known to trigger superoxide anion release. The formation of the stimulatory receptor units was determined by quantitating the rate of superoxide anion production through its reduction of cytochrome c. This rate has been found to correlate with the rate of binding of cross-linking antibody and, therefore, the rate of formation of the stimulatory moieties (receptor aggregates). Internalization of cross-linked Fc gamma RI was measured by quantitation of cell-associated FITC-labeled Fc gamma RI-specific mAb resistant to acid elution. We found that cross-linking antibody bound to Fc gamma RI continued to be taken up by the cells well after cessation of oxidase activity. The constant rate of uptake and the differential effect of temperature on these two functions suggested that they are separately regulated. Quantitation of cross-linked receptors that were inactive, i.e., no longer stimulating superoxide anion production, indicated that 50% of internalizable, and therefore cross-linked, Fc gamma RI remained on the surface after oxidase activity had ceased. This evidence of cessation of oxidase activity before the endocytic uptake of mAb/R stimulatory units indicates that the activated state of surface cross-linked Fc gamma RI is of brief duration and that occupation of the receptors by cross-linking-ligand does not sustain the activated state of the receptor. Thus, Fc gamma RI-mediated oxidase activation is temporally limited to the formation of the stimulatory receptor moiety.

摘要

众所周知,FcγR介导炎症介质的快速释放,此外,在刺激性抗体复合物的摄取中也起着重要作用。人单核细胞上的人IgG1的FcR(FcγRI)激活会触发NADPH氧化酶的短暂激活。在本研究中,我们测试了NADPH氧化酶激活的短暂性可能是交联的FcγRI快速内化的结果这一可能性。通过将FcγRI与已知能触发超氧阴离子释放的受体特异性单克隆抗体交联来形成刺激性受体部分。通过定量超氧阴离子通过还原细胞色素c的产生速率来确定刺激性受体单元的形成。已发现该速率与交联抗体的结合速率相关,因此与刺激性部分(受体聚集体)的形成速率相关。通过定量对酸洗脱具有抗性的细胞相关FITC标记的FcγRI特异性单克隆抗体来测量交联的FcγRI的内化。我们发现,在氧化酶活性停止后很长时间,与FcγRI结合的交联抗体仍继续被细胞摄取。摄取的恒定速率以及温度对这两种功能的不同影响表明它们是分别调节的。对无活性的交联受体进行定量,即不再刺激超氧阴离子产生的受体,表明在氧化酶活性停止后,50%可内化并因此交联的FcγRI仍留在表面。在mAb/R刺激性单元的内吞摄取之前氧化酶活性停止的这一证据表明,表面交联的FcγRI的激活状态持续时间短暂,并且交联配体对受体的占据并不能维持受体的激活状态。因此,FcγRI介导的氧化酶激活在时间上仅限于刺激性受体部分的形成。

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