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CD44介导的吞噬作用可诱导小鼠巨噬细胞中补体受体3的外向内激活。

CD44-mediated phagocytosis induces inside-out activation of complement receptor-3 in murine macrophages.

作者信息

Vachon Eric, Martin Raiza, Kwok Vivian, Cherepanov Vera, Chow Chung-Wai, Doerschuk Claire M, Plumb Jonathan, Grinstein Sergio, Downey Gregory P

机构信息

Division of Respirology, Department of Medicine, University of Toronto, Toronto, ON, Canada.

出版信息

Blood. 2007 Dec 15;110(13):4492-502. doi: 10.1182/blood-2007-02-076539. Epub 2007 Sep 7.

Abstract

Diverse receptors, including Fcgamma receptors and beta(2) integrins (complement receptor-3 [CR3], CD11b/CD18), have been implicated in phagocytosis, but their distinct roles and interactions with other receptors in particle engulfment are not well defined. CD44, a transmembrane adhesion molecule involved in binding and metabolism of hyaluronan, may have additional functions in regulation of inflammation and phagocytosis. We have recently reported that CD44 is a fully competent phagocytic receptor that is able to trigger ingestion of large particles by macrophages. Here, we investigated the role of coreceptors and intracellular signaling pathways in modulation of CD44-mediated phagocytosis. Using biotinylated erythrocytes coated with specific antibodies (anti-CD44-coated erythrocytes [Ebabs]) as the phagocytic prey, we determined that CD44-mediated phagocytosis is reduced by 45% by a blocking CD11b antibody. Further, CD44-mediated phagocytosis was substantially (42%) reduced in CD18-null mice. Immunofluorescence microscopy revealed that CD11b is recruited to the phagocytic cup. The mechanism of integrin activation and mobilization involved activation of the GTPase Rap1. CD44-mediated phagocytosis was also sensitive to the extracellular concentration of the divalent cation Mg(2+) but not Ca(2+). In addition, buffering of intracellular Ca(2+) did not affect CD44-mediated phagocytosis. Taken together, these data suggest that CD44 stimulation induces inside-out activation of CR3 through the GTPase Rap1.

摘要

包括Fcγ受体和β2整合素(补体受体-3 [CR3],CD11b/CD18)在内的多种受体都与吞噬作用有关,但其在颗粒吞噬中的独特作用以及与其他受体的相互作用尚未明确界定。CD44是一种参与透明质酸结合和代谢的跨膜黏附分子,可能在炎症调节和吞噬作用中具有其他功能。我们最近报道,CD44是一种完全有功能的吞噬受体,能够触发巨噬细胞摄取大颗粒。在此,我们研究了共受体和细胞内信号通路在调节CD44介导的吞噬作用中的作用。使用包被特异性抗体的生物素化红细胞(抗CD44包被的红细胞 [Ebabs])作为吞噬猎物,我们确定阻断性CD11b抗体可使CD44介导的吞噬作用降低45%。此外,在CD18基因敲除小鼠中,CD44介导的吞噬作用大幅降低(42%)。免疫荧光显微镜检查显示,CD11b被募集到吞噬杯。整合素激活和动员的机制涉及小G蛋白Rap1的激活。CD44介导的吞噬作用对二价阳离子Mg2+的细胞外浓度敏感,但对Ca2+不敏感。此外,细胞内Ca2+的缓冲不影响CD44介导的吞噬作用。综上所述,这些数据表明,CD44刺激通过小G蛋白Rap1诱导CR3的外向内激活。

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