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人类和小鼠Fc-γ受体吞噬作用及内吞作用中激酶需求的差异

Differential kinase requirements in human and mouse Fc-gamma receptor phagocytosis and endocytosis.

作者信息

Huang Zhen-Yu, Barreda Daniel R, Worth Randall G, Indik Zena K, Kim Moo-Kyung, Chien Paul, Schreiber Alan D

机构信息

University of Pennsylvania School of Medicine, Hematology and Oncology Division, 421 Curie Blvd., Philadelphia, PA 19104, USA.

出版信息

J Leukoc Biol. 2006 Dec;80(6):1553-62. doi: 10.1189/jlb.0106019. Epub 2006 Sep 11.

Abstract

Fc gamma receptors (FcgammaRs) contribute to the internalization of large and small immune complexes through phagocytosis and endocytosis, respectively. The molecular processes underlying these internalization mechanisms differ dramatically and have distinct outcomes in immune clearance and modulation of cell function. However, it is unclear how the same receptors (FcgammaR) binding to identical ligands (IgG) can elicit such distinct responses. We and others have shown that Syk kinase, Src-related tyrosine kinases (SRTKs) and phosphatidyl inositol 3-kinases (PI3K) play important roles in FcgammaR phagocytosis. Herein, we demonstrate that these kinases are not required for FcgammaR endocytosis. Endocytosis of heat-aggregated IgG (HA-IgG) by COS-1 cells stably transfected with FcgammaRIIA or chimeric FcgammaRI-gamma-gamma (EC-TM-CYT) was not significantly altered by PP2, piceatannol, or wortmannin. In contrast, phagocytosis of large opsonized particles (IgG-sensitized sheep erythrocytes, EA) was markedly reduced by these inhibitors. These results were confirmed in primary mouse bone marrow-derived macrophages and freshly isolated human monocytes. Levels of receptor phosphorylation were similar when FcgammaRIIA was cross-linked using HA-IgG or EA. However, inhibition of FcgammaR phosphorylation prevented only FcgammaR phagocytosis. Finally, biochemical analyses of PI3K(p85)-Syk binding indicated that direct interactions between native Syk and PI3K proteins are differentially regulated during FcgammaR phagocytosis and endocytosis. Overall, our results indicate that FcgammaR endocytosis and phagocytosis differ dramatically in their requirement for Syk, SRTKs, and PI3K, pointing to striking differences in their signal transduction mechanisms. We propose a competitive inhibition-based model in which PI3K and c-Cbl play contrasting roles in the induction of phagocytosis or endocytosis signaling cascades.

摘要

Fcγ受体(FcgammaRs)分别通过吞噬作用和胞吞作用促进大小免疫复合物的内化。这些内化机制背后的分子过程差异巨大,在免疫清除和细胞功能调节方面具有不同的结果。然而,尚不清楚相同的受体(FcγR)与相同的配体(IgG)结合如何引发如此不同的反应。我们和其他人已经表明,Syk激酶、Src相关酪氨酸激酶(SRTKs)和磷脂酰肌醇3激酶(PI3K)在FcγR吞噬作用中起重要作用。在此,我们证明这些激酶对于FcγR胞吞作用并非必需。稳定转染FcγRIIA或嵌合FcγRI-γ-γ(EC-TM-CYT)的COS-1细胞对热聚集IgG(HA-IgG)的胞吞作用不会因PP2、白皮杉醇或渥曼青霉素而发生显著改变。相反,这些抑制剂可显著降低大的调理颗粒(IgG致敏绵羊红细胞,EA)的吞噬作用。这些结果在原代小鼠骨髓来源的巨噬细胞和新鲜分离的人单核细胞中得到证实。当使用HA-IgG或EA交联FcγRIIA时,受体磷酸化水平相似。然而,抑制FcγR磷酸化仅阻止FcγR吞噬作用。最后,PI3K(p85)-Syk结合的生化分析表明,天然Syk和PI3K蛋白之间的直接相互作用在FcγR吞噬作用和胞吞作用过程中受到不同调节。总体而言,我们的结果表明,FcγR胞吞作用和吞噬作用在对Syk、SRTKs和PI3K的需求方面存在显著差异,表明它们的信号转导机制存在显著差异。我们提出了一种基于竞争性抑制的模型,其中PI3K和c-Cbl在吞噬作用或胞吞作用信号级联反应的诱导中发挥相反作用。

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