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一种免疫球蛋白(IgG)分子和一个Fc片段的晶体结构研究。

Crystallographic structure studies of an IgG molecule and an Fc fragment.

作者信息

Huber R, Deisenhofer J, Colman P M, Matsushima M, Palm W

出版信息

Nature. 1976 Dec 2;264(5585):415-20. doi: 10.1038/264415a0.

Abstract

The crystal structures of a human IgG antibody molecule Kol and a human Fc fragment have been determined at 4-A and 3.4-A resolution respectively, by isomorphous replacement. The electron-density maps were interpreted in terms of immunoglobulin domains based on the Rei and McPC 603 models (Kol) and by model-building (Fc). The Fab parts of Kol have a different quaternary structure from that observed in isolated crystalline Fab fragments, there being no longitudinal V-C contact in Kol. The Fc part C terminal to the hinge is disordered in the Kol crystals. It is suggested that the Kol molecule is flexible in solution, whereas fragments are rigid. In the Fc fragment both CH3 and CH2 show the immunoglobulin fold. The CH3 dimer aggregates as CH1-CL while CH2 are widely separated from each other. The carbohydrate bound to Fc is in fixed position. From these structures a hypothetical liganded antibody molecule has been constructed, which is assumed to be rigid.

摘要

通过同晶置换法,分别以4埃和3.4埃的分辨率测定了人IgG抗体分子Kol和人Fc片段的晶体结构。基于Rei和McPC 603模型(Kol)并通过模型构建(Fc),根据免疫球蛋白结构域对电子密度图进行了解释。Kol的Fab部分具有与分离的结晶Fab片段中观察到的不同的四级结构,在Kol中不存在纵向V-C接触。在Kol晶体中,铰链C末端的Fc部分是无序的。有人提出,Kol分子在溶液中是灵活的,而片段是刚性的。在Fc片段中,CH3和CH2均显示出免疫球蛋白折叠。CH3二聚体聚集成CH1-CL,而CH2彼此广泛分离。与Fc结合的碳水化合物处于固定位置。从这些结构构建了一个假设的配体化抗体分子,假定它是刚性的。

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