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人类中性粒细胞上的Fc受体:自然表面分布的电子显微镜研究

Fc receptors on human neutrophils: electron microscopic study of natural surface distribution.

作者信息

An T

出版信息

Immunology. 1980 May;40(1):1-8.

Abstract

The membrane receptor for the Fc portions of IgG (FcR) was examined on the cell surface of human neutrophils using electron microscopic markers of soluble immune complexes composed of ferritin (Fer) and rabbit 7S anti-Fer prepared in forty-fold and 120-fold antigen excess than needed at equivalence. By using negative staining coupled with electron microscopy, most of the immune complexes in forty-fold antigen excess were seen to be composed of one anti-Fer antibody and one or two Fer particles, suggesting that most of the indicator molecules are 'monovalent ligands' in terms of Fc pieces available per single immune complex molecule. FcR on neutrophils labelled with both indicators at 0 degrees in the presence of sodium azide were clustered as discontinuous patches of varying length over the cell surface. The pre-incubation of neutrophils at 37 degrees for 30 min prior to labelling did not alter the grouped distribution of FcR. No diffuse Fer labelling was observed. The clustering of FcR remained the same even after cross-linking the soluble complexes with F(ab')2 anti-Fer into multivalent ligands at 0 degrees. We favour the clustering of FcR as the natural surface representation on human neutrophils rather than an initial redistribution induced by the ligands. The findings are discussed with relation to the natural distribution of other surface antigens.

摘要

利用由铁蛋白(Fer)和兔7S抗铁蛋白制备的可溶性免疫复合物的电子显微镜标记物,以比等价所需过量40倍和120倍的抗原,在人中性粒细胞的细胞表面检测了IgG Fc部分的膜受体(FcR)。通过使用负染色结合电子显微镜观察,在抗原过量40倍的情况下,大多数免疫复合物被观察为由一个抗铁蛋白抗体和一个或两个铁蛋白颗粒组成,这表明就每个单个免疫复合物分子可利用的Fc片段而言,大多数指示分子是“单价配体”。在叠氮化钠存在下于0℃用两种指示物标记的中性粒细胞上的FcR,在细胞表面聚集成不同长度的不连续斑块。在标记前将中性粒细胞于37℃预孵育30分钟,并未改变FcR的聚集分布。未观察到弥散的铁蛋白标记。即使在0℃将可溶性复合物与F(ab')2抗铁蛋白交联成多价配体后,FcR的聚集仍保持不变。我们倾向于认为FcR的聚集是人类中性粒细胞的天然表面表现形式,而不是由配体诱导的初始再分布。结合其他表面抗原的天然分布对这些发现进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/add0/1458471/aa469bb09efd/immunology00250-0011-a.jpg

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