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单体免疫球蛋白G的结合触发FcγRI介导的内吞作用。

Binding of monomeric immunoglobulin G triggers Fc gamma RI-mediated endocytosis.

作者信息

Harrison P T, Davis W, Norman J C, Hockaday A R, Allen J M

机构信息

Physiological Laboratory, University of Cambridge, United Kingdom.

出版信息

J Biol Chem. 1994 Sep 30;269(39):24396-402.

PMID:7929100
Abstract

Cross-linking of leukocyte Fc receptors specific for IgG (Fc gamma Rs) by multivalent IgG complexes triggers a wide range of immune functions. Many of these responses can also be stimulated in vitro using anti-Fc gamma R monoclonal antibody-containing complexes. This observation has suggested that cross-linking is the key event and that binding of IgG, which in itself does not elicit a response, is functionally passive. However, in this study we show that binding of monomeric IgG to the human high affinity receptor, Fc gamma RI, is itself sufficient to permit the receptor to enter an internalization-recycling pathway, which has a small intracellular pool. Unoccupied Fc gamma RI is not internalized and recycled in this manner. This finding may be explained by the previous observation that there is a physical association between Fc gamma RI and the cytoskeletal component, actin-binding protein (non-muscle filamin; ABP-280), which is disrupted upon IgG binding. Thus, in the absence of IgG, Fc gamma RI may be physically excluded from the endocytic pathway by tethering to the cytoskeleton. The role of cross-linking is to divert Fc gamma RI-IgG complexes from the recycling pathway, causing their retention and subsequent degradation within the cell. In contrast to Fc gamma RII-mediated endocytosis, intracellular accumulation of cross-linked Fc gamma RI-IgG complexes is not sensitive to inhibition by genistein, suggesting that the process is independent of tyrosine kinase activity.

摘要

多价IgG复合物使白细胞特异性针对IgG的Fc受体(FcγRs)发生交联,从而触发多种免疫功能。其中许多反应也可以在体外使用含抗FcγR单克隆抗体的复合物来刺激。这一观察结果表明交联是关键事件,而本身不会引发反应的IgG结合在功能上是被动的。然而,在本研究中我们表明,单体IgG与人高亲和力受体FcγRI的结合本身就足以使该受体进入内化-再循环途径,该途径有一个小的细胞内池。未被占据的FcγRI不会以这种方式内化和再循环。这一发现可能可以用之前的观察结果来解释,即FcγRI与细胞骨架成分肌动蛋白结合蛋白(非肌肉细丝蛋白;ABP-280)之间存在物理关联,这种关联在IgG结合时会被破坏。因此,在没有IgG的情况下,FcγRI可能通过与细胞骨架相连而在物理上被排除在内吞途径之外。交联的作用是使FcγRI-IgG复合物从再循环途径转向,导致它们在细胞内滞留并随后降解。与FcγRII介导的内吞作用相反,交联的FcγRI-IgG复合物在细胞内的积累对染料木黄酮的抑制不敏感,这表明该过程独立于酪氨酸激酶活性。

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