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两种带有铰链区的完整单克隆抗体构象的比较。

Comparison of the conformations of two intact monoclonal antibodies with hinges.

作者信息

Harris L J, Larson S B, Skaletsky E, McPherson A

机构信息

Department of Molecular Biology and Biochemistry, University of California, Irvine, USA.

出版信息

Immunol Rev. 1998 Jun;163:35-43. doi: 10.1111/j.1600-065x.1998.tb01186.x.

Abstract

Structures of two intact monoclonal antibodies were solved by X-ray diffraction analysis revealing, in both cases, the dispositions of all segments, as well as the structures of the hinge polypeptides. An IgG1, whose antigen is the drug phenobarbital, assumed a completely different conformation when compared with an IgG2a specific for canine lymphoma cells. Though neither IgG displays global two-fold symmetry, both maintain two pseudo dyad axes, one relating Fab segments, and the other the halves of the Fc. In both IgGs, the Fc segment is obliquely disposed with respect to the plane of the Fabs, making an angle of 128 degrees in the IgG2a, and 107 degrees in the IgG1. Hinge angles of the IgG1 are notably different at 78 degrees and 123 degrees, and unique as well from IgG2a values of 66 degrees and 113 degrees. Elbow angles within the IgG1 Fabs are the same at 155 degrees, but non-identical in IgG2a where they took on values of 143 degrees and 159 degrees. The IgG2a has an angle of 172 degrees between Fabs so that it exhibits a "distorted T" shape, whereas that angle in the IgG1 is a much more acute 115 degrees producing a "distorted Y". CH2 domains appear, in both antibodies, to be the most independently mobile of the paired IgG domains. This perhaps reflects their importance in modulating effector functions through exposure of binding loci on the CH2, at the CH2-CH3 interface, and on lower hinge polypeptides. Hinges in both antibodies contain disulfide-linked cores bounded by fluid regions above and below, which provide mobility to the Fabs and Fc respectively. The conformations seen in these two structures are undoubtedly only two among many but they illustrate the modes of flexibility inherent to the IgG architecture.

摘要

通过X射线衍射分析解析了两种完整单克隆抗体的结构,结果显示在两种情况下所有片段的布局以及铰链多肽的结构。一种抗原为药物苯巴比妥的IgG1与一种针对犬淋巴瘤细胞的IgG2a相比呈现出完全不同的构象。尽管这两种IgG均不具有整体二重对称性,但两者都维持两条假二重轴,一条连接Fab片段,另一条连接Fc的两半部分。在这两种IgG中,Fc片段相对于Fab平面倾斜排列,在IgG2a中形成128度角,在IgG1中形成107度角。IgG1的铰链角显著不同,分别为78度和123度,也不同于IgG2a的66度和113度。IgG1的Fab内的肘角相同,均为155度,但在IgG2a中不同,分别为143度和159度。IgG2a的Fab之间的角度为172度,因此呈现出“扭曲的T”形,而IgG1中的该角度则更为尖锐,为115度,形成“扭曲的Y”形。在这两种抗体中,CH2结构域似乎是配对的IgG结构域中最具独立移动性的。这或许反映了它们在通过CH2、CH2-CH3界面以及较低铰链多肽上的结合位点暴露来调节效应功能方面的重要性。两种抗体的铰链均包含由上下流体区域界定的二硫键连接核心,分别为Fab和Fc提供了移动性。在这两种结构中看到的构象无疑只是众多构象中的两种,但它们说明了IgG结构固有的灵活性模式。

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