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作为小识别单元的抗体VH结构域。

Antibody VH domains as small recognition units.

作者信息

Davies J, Riechmann L

机构信息

MRC Laboratory of Molecular Biology, Cambridge, U.K.

出版信息

Biotechnology (N Y). 1995 May;13(5):475-9. doi: 10.1038/nbt0595-475.

Abstract

To develop immunoglobulin based recognition units of minimum size, a human heavy chain variable domain (VH) was designed for selection of phage displayed VH. Non-specific binding of the VH through its interface for the light chain variable domain (VL) was prevented through three mutations (G44E, L45R and W47G) in this interface. These mutations were introduced to mimic camelid antibody heavy chains naturally devoid of light chain partners. The third hypervariable loop of the modified VH was then randomised to yield a repertoire of 2 x 10(8) independent clones, which was displayed on phage and selected through antigen binding. VH clones specific for hapten and protein antigens were isolated. Soluble VH was expressed with an isoleucine residue at position 47 to improve expression and stability compared to VH containing a glycine residue at this position, which however was preferable for phage selection. Affinities of soluble VH for hapten were between 100 nM and 400 nM. The VH domains were highly specific, stable and well expressed in Escherichia coli. These positive biophysical properties and their small size make them attractive for biotechnological applications.

摘要

为了开发最小尺寸的基于免疫球蛋白的识别单元,设计了一种人重链可变结构域(VH)用于筛选噬菌体展示的VH。通过该结构域与轻链可变结构域(VL)的界面处的三个突变(G44E、L45R和W47G)来防止VH通过该界面产生非特异性结合。引入这些突变是为了模拟天然缺乏轻链伙伴的骆驼科动物抗体重链。然后将修饰后的VH的第三个高变环随机化,以产生一个包含2×10⁸个独立克隆的文库,将其展示在噬菌体上并通过抗原结合进行筛选。分离出了对半抗原和蛋白质抗原有特异性的VH克隆。与在该位置含有甘氨酸残基的VH相比,在第47位含有异亮氨酸残基的可溶性VH被表达出来,以提高表达和稳定性,不过在噬菌体筛选中甘氨酸残基在该位置更合适。可溶性VH对半抗原的亲和力在100 nM至400 nM之间。VH结构域具有高度特异性、稳定性,并且在大肠杆菌中表达良好。这些良好的生物物理特性及其小尺寸使其在生物技术应用中具有吸引力。

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