Suppr超能文献

FcγRIIIa(CD16)的细胞类型特异性糖型:差异配体结合

Cell type-specific glycoforms of Fc gamma RIIIa (CD16): differential ligand binding.

作者信息

Edberg J C, Kimberly R P

机构信息

Department of Medicine, University of Alabama at Birmingham 35294, USA.

出版信息

J Immunol. 1997 Oct 15;159(8):3849-57.

PMID:9378972
Abstract

Fc gamma RIIIa, considered an intermediate affinity receptor, can variably bind monomeric IgG and appears to have a higher affinity for IgG than the lower affinity Fc gamma Rs, Fc gamma RII and Fc gamma RIIIb. We explored this property for both NK cell and monocyte Fc gamma RIIIa and found higher affinity ligand binding by Fc gamma RIIIa expressed on NK cells compared with Fc gamma RIIIa on monocytes. In normal whole blood or plasma (containing 8-11 mg/ml IgG), NK cell Fc gamma RIIIa was fully blocked, but in monocytes Fc gamma RIIIa showed approximately 60% blockade of the binding of mAb 3G8, which binds in or near the ligand binding site. The ligand binding site of NK cell Fc gamma RIIIa was blocked with as little as 2 mg/ml of human IgG, while monocyte Fc gamma RIIIa was only partially (30%) blocked by 2 mg/ml of human IgG. In contrast, plasma containing approximately 26 mg/ml of IgG (obtained from patients receiving therapeutic gamma-globulin) showed complete saturation of monocyte Fc gamma RIIIa with blockade of mAb 3G8 binding. These binding differences are not due to allelic polymorphisms or primary sequence differences between donors. Although NK cell and monocyte Fc gamma RIIIa have identical protein cores, they each undergo differential cell type-specific glycosylation. NK cell Fc gamma RIIIa is glycosylated with high mannose- and complex-type oligosaccharides, while monocyte Fc gamma RIIIa has no high mannose-type oligosaccharides. These results indicate that natural glycoforms of Fc gamma RIIIa (cell type-specific glycosylation variants) bind ligand differently, conferring a lower affinity on monocyte/macrophage Fc gamma RIIIa, which makes the receptor ideal for initial immune complex capture and sensitive to moderate changes in serum IgG levels.

摘要

FcγRIIIa被认为是一种中等亲和力受体,它可以不同程度地结合单体IgG,并且与低亲和力的FcγR(FcγRII和FcγRIIIb)相比,似乎对IgG具有更高的亲和力。我们研究了NK细胞和单核细胞FcγRIIIa的这一特性,发现与单核细胞上的FcγRIIIa相比,NK细胞上表达的FcγRIIIa具有更高亲和力的配体结合能力。在正常全血或血浆(含有8 - 11mg/ml IgG)中,NK细胞FcγRIIIa被完全阻断,但在单核细胞中,FcγRIIIa对结合于配体结合位点或其附近的单克隆抗体3G8的结合显示约60%的阻断。NK细胞FcγRIIIa的配体结合位点用低至2mg/ml的人IgG即可被阻断,而单核细胞FcγRIIIa仅被2mg/ml的人IgG部分(30%)阻断。相比之下,含有约26mg/ml IgG的血浆(从接受治疗性γ球蛋白的患者中获得)显示单核细胞FcγRIIIa完全饱和,单克隆抗体3G8的结合被阻断。这些结合差异并非由于供体之间的等位基因多态性或一级序列差异。虽然NK细胞和单核细胞FcγRIIIa具有相同的蛋白质核心,但它们各自经历不同的细胞类型特异性糖基化。NK细胞FcγRIIIa被高甘露糖型和复合型寡糖糖基化,而单核细胞FcγRIIIa没有高甘露糖型寡糖。这些结果表明,FcγRIIIa的天然糖型(细胞类型特异性糖基化变体)与配体的结合方式不同,赋予单核细胞/巨噬细胞FcγRIIIa较低的亲和力,这使得该受体成为初始免疫复合物捕获的理想选择,并且对血清IgG水平的适度变化敏感。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验