单域骆驼抗体:现状

Serge Muyldermans
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引用次数: 539

摘要

抗体的成对可变结构域的抗原结合能力是很好的确定。观察到分离的抗半抗原抗体重链在缺乏轻链的情况下保留了一些抗原结合能力,导致试图获得更小的VH格式的抗原结合单元。不幸的是,其溶解度差,对抗原的亲和力降低以及不可复制的结果表明,要成功生成单域抗体片段,需要额外的蛋白质工程。偶然发现,这种工程在自然界中已经连续进行。骆驼和大羊驼的部分体液免疫反应主要基于重链抗体,而轻链抗体完全不存在。这些独特的抗体同型仅通过一个称为VHH的单一可变结构域与抗原相互作用。尽管缺乏VH-VL组合多样性,这些重链抗体通过扩大其高变区表现出广泛的抗原结合库。描述了利用免疫单峰或骆驼的VHH库的方法。这些VHH文库含有高滴度的完整抗原特异性结合物,这些结合物在体内成熟。具有随机CDR3的“骆驼化”人类VH、小鼠VH或骆驼类VHH支架的合成文库可以构成有效的替代免疫文库,以检索有用的单结构域抗原结合物。从这些文库中选择的重组VHH表达良好,在水环境中高度可溶,并且非常健壮。一些体内成熟的VHH也被证明是有效的酶抑制剂,抗原结合位点的低复杂性是设计肽模拟物的一个优势。由于其更小的尺寸和上述特性,VHH显然比常规抗体片段提供了附加价值。它们有望作为酶抑制剂和体内体,作为多价或多功能结构的模块化构建单元,或作为免疫吸附剂和生物传感器的检测单元。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single domain camel antibodies: current status

The antigen-binding capacity of the paired variable domains of an antibody is well established. The observation that the isolated heavy chains of anti-hapten antibodies retain some antigen-binding capacity in the absence of light chains led to attempts to obtain an even smaller antigen-binding unit in a VH format. Unfortunately, the poor solubility, the reduced affinity for the antigen and the irreproducible outcome showed that additional protein engineering would be required to successfully generate single-domain antibody fragments. By serendipity, it was discovered that this engineering is already performed continuously in nature. Part of the humoral immune response of camels and llamas is based largely on heavy-chain antibodies where the light chain is totally absent. These unique antibody isotypes interact with the antigen by virtue of only one single variable domain, referred to as VHH. Despite the absence of the VH–VL combinatorial diversity, these heavy-chain antibodies exhibit a broad antigen-binding repertoire by enlarging their hypervariable regions. Methods are described to tap the VHH repertoire of an immunised dromedary or llama. These VHH libraries contain a high titre of intact antigen-specific binders that were matured in vivo. Synthetic libraries of a ‘camelised’ human VH, a mouse VH or a camelid VHH scaffold with a randomised CDR3 could constitute a valid alternative to immune libraries to retrieve useful single-domain antigen binders. The recombinant VHH that are selected from such libraries are well expressed, highly soluble in aqueous environments and very robust. Some in vivo matured VHH were also shown to be potent enzyme inhibitors, and the low complexity of the antigen-binding site is an asset in the design of peptide mimetics. Because of their smaller size and the above properties, the VHH clearly offer added-value over conventional antibody fragments. They are expected to open perspectives as enzyme inhibitors and intrabodies, as modular building units for multivalent or multifunctional constructs, or as immuno-adsorbents and detection units in biosensors.

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