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通过补体受体3α链(CD11b)C末端区域附近的结合位点激活粒细胞,这可能参与了与糖基磷脂酰肌醇锚定的FcγRIIIB(CD16)分子形成膜内复合物。

Granulocyte activation via a binding site near the C-terminal region of complement receptor type 3 alpha-chain (CD11b) potentially involved in intramembrane complex formation with glycosylphosphatidylinositol-anchored Fc gamma RIIIB (CD16) molecules.

作者信息

Stöckl J, Majdic O, Pickl W F, Rosenkranz A, Prager E, Gschwantler E, Knapp W

机构信息

Institute of Immunology, University of Vienna, Austria.

出版信息

J Immunol. 1995 May 15;154(10):5452-63.

PMID:7730647
Abstract

We report that engagement of a particular epitope near the C-terminal region of complement receptor type 3 (CR3, CD11b/CD18) alpha-chain with CD11b mAb VIM12 induces granulocyte activation with a rise in cytosolic-free Ca2+, actin polymerization, an up-regulation of CR3 cell surface expression and enhanced adhesiveness. Induction of enhanced adhesiveness and homotypic aggregation of human granulocytes represents an active process. It is temperature and energy dependent, requires divalent cations, and an intact cytoskeleton. The mAb VIM12-induced enhanced adhesiveness seems to be mediated, at least in part, by activated CR3 molecules. It can be significantly inhibited, although not completely abolished, with blocking mAbs against adhesiotopes of CR3. VIM12-induced adhesion could be blocked with the serine/threonine inhibitors okadaic acid and calyculin A and with dibuturyl-cAMP but not with the protein kinase inhibitors herbimycin A and staurosporine. We further present evidence that the particular molecular region of CR3 recognized by mAb VIM12 might be involved in the reported intramembrane sugar-lectin type interaction and complex formation between transmembrane CR3 and glycosylphosphatidylinositol (GPI)-anchored Fc gamma RIIIB (CD16) molecules on human granulocytes. Binding of mAb VIM12 to CR3 on granulocytes enhances the release of GPI-anchored Fc gamma RIIIB molecules from granulocytes upon phosphoinositol-phospholipase C treatment. The sugar preparation N-acetyl-D-glucosamine, previously shown to dissociate CR3-Fc gamma RIIIB complex formation, inhibits mAb VIM12 binding. Engagement of CR3 with mAb VIM12 may thus mimic a biologically relevant intramembrane cooperation between two distinct receptor molecules on human granulocytes.

摘要

我们报告称,补体受体3(CR3,CD11b/CD18)α链C末端区域附近的特定表位与CD11b单克隆抗体VIM12结合,可诱导粒细胞活化,伴随胞质游离Ca2+升高、肌动蛋白聚合、CR3细胞表面表达上调以及黏附性增强。人粒细胞黏附性增强和同型聚集的诱导是一个活跃过程。它依赖温度和能量,需要二价阳离子和完整的细胞骨架。单克隆抗体VIM12诱导的黏附性增强似乎至少部分由活化的CR3分子介导。用针对CR3黏附表位的阻断性单克隆抗体可显著抑制(虽不能完全消除)这种增强。VIM12诱导的黏附可被丝氨酸/苏氨酸抑制剂冈田酸和花萼海绵诱素A以及二丁酰环磷腺苷阻断,但不能被蛋白激酶抑制剂赫曲霉素A和星形孢菌素阻断。我们进一步提供证据表明,单克隆抗体VIM12识别的CR3特定分子区域可能参与了所报道的跨膜CR3与人类粒细胞上糖基磷脂酰肌醇(GPI)锚定的FcγRIIIB(CD16)分子之间的膜内糖凝集素类型相互作用和复合物形成。粒细胞上的单克隆抗体VIM12与CR3结合,在经磷酸肌醇 - 磷脂酶C处理后增强了GPI锚定的FcγRIIIB分子从粒细胞的释放。先前已证明可解离CR3 - FcγRIIIB复合物形成的糖制剂N - 乙酰 - D - 葡萄糖胺可抑制单克隆抗体VIM12的结合。因此,CR3与单克隆抗体VIM12结合可能模拟了人类粒细胞上两种不同受体分子之间生物学上相关的膜内合作。

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