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巨噬细胞-1/补体受体3型(CD11b/CD18)凝集素结构域在调节中性粒细胞黏附中的作用。

Function of the lectin domain of Mac-1/complement receptor type 3 (CD11b/CD18) in regulating neutrophil adhesion.

作者信息

Xia Yu, Borland Gita, Huang Jibiao, Mizukami Ikuko F, Petty Howard R, Todd Robert F, Ross Gordon D

机构信息

Chemoattractant Group of the James Graham Brown Cancer Center, Department of Pathology, University of Louisville, KY 40202, USA.

出版信息

J Immunol. 2002 Dec 1;169(11):6417-26. doi: 10.4049/jimmunol.169.11.6417.

Abstract

A lectin function within CD11b mediates both cytotoxic priming of Mac-1/complement receptor type 3 (CR3) by beta-glucan and the formation of transmembrane signaling complexes with GPI-anchored glycoproteins such as CD16b (FcgammaRIIIb). A requirement for GPI-anchored urokinase plasminogen activator receptor (uPAR; CD87) in neutrophil adhesion and diapedesis has been demonstrated with uPAR-knockout mice. In this study, neutrophil activation conditions generating high-affinity (H-AFN) or low-affinity (L-AFN) beta(2) integrin adhesion were explored. A role for the Mac-1/CR3 lectin domain and uPAR in mediating H-AFN or L-AFN adhesion was suggested by the inhibition of Mac-1/CR3-dependent adhesion to ICAM-1 or fibrinogen by beta-glucan or anti-uPAR. The formation of uPAR complexes with Mac-1/CR3 activated for L-AFN adhesion was demonstrated by fluorescence resonance energy transfer. Conversely, Jurkat cell LFA-1 H-AFN-adhesion to ICAM-1 was not associated with uPAR/LFA-1 complexes, any requirement for GPI-anchored glycoproteins, or inhibition by beta-glucan. A single CD11b lectin site for beta-glucan and uPAR was suggested because the binding of either beta-glucan or uPAR to Mac-1/CR3 selectively masked two CD11b epitopes adjacent to the transmembrane domain. Moreover, treatment with phosphatidylinositol-specific phospholipase C that removed GPI-anchored proteins increased CD11b-specific binding of (125)I-labeled beta-glucan by 3-fold and this was reversed with soluble recombinant uPAR. Conversely, neutrophil activation for generation of Mac-1/CR3/uPAR complexes inhibited CD11b-dependent binding of (125)I-labeled beta-glucan by 75%. These data indicate that the same lectin domain within CD11b regulates both the cytotoxic and adhesion functions of Mac-1/CR3.

摘要

CD11b内的一种凝集素功能介导了β-葡聚糖对Mac-1/补体受体3型(CR3)的细胞毒性启动作用,以及与糖基磷脂酰肌醇(GPI)锚定糖蛋白(如CD16b,即FcγRIIIb)形成跨膜信号复合物。uPAR基因敲除小鼠已证明中性粒细胞黏附和渗出过程中对GPI锚定的尿激酶型纤溶酶原激活物受体(uPAR;CD87)有需求。在本研究中,探索了产生高亲和力(H-AFN)或低亲和力(L-AFN)β2整合素黏附的中性粒细胞激活条件。β-葡聚糖或抗uPAR对Mac-1/CR3依赖的与细胞间黏附分子-1(ICAM-1)或纤维蛋白原的黏附的抑制作用,提示了Mac-1/CR3凝集素结构域和uPAR在介导H-AFN或L-AFN黏附中的作用。通过荧光共振能量转移证明了uPAR复合物与为L-AFN黏附而激活的Mac-1/CR3的形成。相反,Jurkat细胞LFA-1对ICAM-1的H-AFN黏附与uPAR/LFA-1复合物、对GPI锚定糖蛋白的任何需求或β-葡聚糖的抑制作用均无关。由于β-葡聚糖或uPAR与Mac-1/CR3的结合选择性地掩盖了跨膜结构域附近的两个CD11b表位,因此提示了CD11b上存在一个β-葡聚糖和uPAR的单一凝集素位点。此外,用磷脂酰肌醇特异性磷脂酶C处理以去除GPI锚定蛋白,可使(125)I标记的β-葡聚糖的CD11b特异性结合增加3倍,而用可溶性重组uPAR可使其逆转。相反,激活中性粒细胞以生成Mac-1/CR3/uPAR复合物可使(125)I标记的β-葡聚糖的CD11b依赖性结合抑制75%。这些数据表明,CD11b内的同一凝集素结构域调节Mac-1/CR3的细胞毒性和黏附功能。

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