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完整IgG2a单克隆抗体的精细结构

Refined structure of an intact IgG2a monoclonal antibody.

作者信息

Harris L J, Larson S B, Hasel K W, McPherson A

机构信息

Department of Biochemistry, University of California, Riverside 92521, USA.

出版信息

Biochemistry. 1997 Feb 18;36(7):1581-97. doi: 10.1021/bi962514+.

Abstract

The structure of an intact, anti-canine lymphoma monoclonal antibody (Mab231) was determined by molecular replacement and refined in a triclinic cell to an R-value of 20.9%, using synchrotron diffraction data from 2.8 to 20 A resolution. All segments of the antibody, including the hinge region and carbohydrate component, are visible in electron density maps. There is no overall symmetry to the antibody, as the Fc is disposed in an entirely oblique manner with respect to the Fabs. The CH2 and CH3 domains do, however, possess a nearly exact, local 2-fold relationship. The Fab segments are related by a second, independent, local dyad axis, exact only with respect to constant domains. Variable domains exhibit no symmetry relationship as a consequence of the 16 degrees difference in Fab elbow angles. Variable domain pair associations VL:VH for the Fabs are virtually the same, and corresponding CDRs of the two Fabs also are nearly identical in structure. CDR-H3 displays the greatest difference. Hypervariable loops of both Fabs are involved in contacts with symmetry-related Fc segments at the CH2-CH3 switch junction, suggesting a "complex" structure. The hinge segment connecting Fabs with the Fc is quite extended and exhibits thermal factors indicative of a high degree of mobility. It consists of a well-defined upper hinge that partially maintains dyad symmetry and a fairly rigid core bounded above and below by fluid polypeptides that provide segmental flexibility. This structure represents the first visualization by X-ray analysis of a murine Fc segment, and its CH2 domains exhibit substantial rigid body conformational changes with respect to the human Fc used as an initial molecular replacement model. The oligosaccharides were found by difference Fourier syntheses to be very similar to those of the free human Fc fragment, although differences are present in the terminal residues. The detailed structure of the IgG presented here, and the distribution of effector binding sites, appears consistent with effector activation mechanisms involving translocation and/or aggregation of the Fc following antigen binding by the Fabs.

摘要

通过分子置换法确定了完整的抗犬淋巴瘤单克隆抗体(Mab231)的结构,并在三斜晶胞中进行了精修,使用2.8至20埃分辨率的同步加速器衍射数据,R值达到20.9%。抗体的所有片段,包括铰链区和碳水化合物成分,在电子密度图中均可见。抗体没有整体对称性,因为Fc相对于Fab以完全倾斜的方式排列。然而,CH2和CH3结构域具有近乎精确的局部二重关系。Fab片段通过第二个独立的局部二重轴相关联,仅在恒定结构域方面精确。由于Fab肘部角度相差16度,可变结构域之间不存在对称关系。两个Fab的可变结构域对关联VL:VH实际上是相同的,并且两个Fab的相应互补决定区(CDR)在结构上也几乎相同。CDR-H3显示出最大差异。两个Fab的高变环都参与了在CH2-CH3转换连接处与对称相关的Fc片段的接触,表明存在“复杂”结构。连接Fab与Fc的铰链段相当伸展,并且表现出表明高度灵活性的热因子。它由一个部分保持二重对称性的明确上铰链和一个相当刚性的核心组成,核心的上下由提供片段灵活性的流体多肽界定。该结构代表了通过X射线分析首次可视化的鼠Fc片段,并且其CH2结构域相对于用作初始分子置换模型的人Fc表现出大量刚体构象变化。通过差值傅里叶合成发现,寡糖与游离人Fc片段的寡糖非常相似,尽管末端残基存在差异。这里呈现的IgG的详细结构以及效应子结合位点的分布,似乎与涉及Fc在Fab结合抗原后发生易位和/或聚集的效应子激活机制一致。

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