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具有非同源VH-VL结构域对的三聚体抗体片段的2.0埃分辨率晶体结构显示VH互补决定区3(VH CDR3)发生了重排。

The 2.0-A resolution crystal structure of a trimeric antibody fragment with noncognate VH-VL domain pairs shows a rearrangement of VH CDR3.

作者信息

Pei X Y, Holliger P, Murzin A G, Williams R L

机构信息

Centre for Protein Engineering, Medical Research Council Centre, Hills Road, Cambridge CB2 2QH, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1997 Sep 2;94(18):9637-42. doi: 10.1073/pnas.94.18.9637.

DOI:10.1073/pnas.94.18.9637
PMID:9275175
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC23241/
Abstract

The 2.0-A resolution x-ray crystal structure of a novel trimeric antibody fragment, a "triabody," has been determined. The trimer is made up of polypeptides constructed in a manner identical to that previously described for some "diabodies": a VL domain directly fused to the C terminus of a VH domain-i.e., without any linker sequence. The trimer has three Fv heads with the polypeptides arranged in a cyclic, head-to-tail fashion. For the particular structure reported here, the polypeptide was constructed with a VH domain from one antibody fused to the VL domain from an unrelated antibody giving rise to "combinatorial" Fvs upon formation of the trimer. The structure shows that the exchange of the VL domain from antibody B1-8, a Vlambda domain, with the VL domain from antibody NQ11, a Vkappa domain, leads to a dramatic conformational change in the VH CDR3 loop of antibody B1-8. The magnitude of this change is similar to the largest of the conformational changes observed in antibody fragments in response to antigen binding. Combinatorial pairing of VH and VL domains constitutes a major component of antibody diversity. Conformationally flexible antigen-binding sites capable of adapting to the specific CDR3 loop context created upon VH-VL pairing may be employed by the immune system to maximize the structural diversity of the immune response.

摘要

已确定一种新型三聚体抗体片段“三体抗体”的2.0埃分辨率X射线晶体结构。该三聚体由以与先前描述的一些“双体抗体”相同的方式构建的多肽组成:一个VL结构域直接融合到VH结构域的C末端,即没有任何接头序列。三聚体有三个Fv头部,多肽以环状、头对尾的方式排列。对于此处报道的特定结构,多肽由一种抗体的VH结构域与另一种不相关抗体的VL结构域融合构建而成,在形成三聚体时产生“组合”Fv。该结构表明,将抗体B1-8(一种Vλ结构域)的VL结构域与抗体NQ11(一种Vκ结构域)的VL结构域进行交换,会导致抗体B1-8的VH CDR3环发生显著的构象变化。这种变化的幅度与在抗体片段中观察到的因抗原结合而产生的最大构象变化相似。VH和VL结构域的组合配对构成了抗体多样性的主要组成部分。免疫系统可能会利用能够适应VH-VL配对时产生的特定CDR3环环境的构象灵活的抗原结合位点,以最大化免疫反应的结构多样性。

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