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Design and use of a phage display library. Human antibodies with subnanomolar affinity against a marker of angiogenesis eluted from a two-dimensional gel

机译:设计和使用噬菌体展示库。具有亚纳摩尔对抗血管生成标志物的亲和力的人抗体从二维凝胶中洗脱

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摘要

We report the construction and the use of a phage display human antibody library (>3 x 10(8) clones) based on principles of protein design. A large repertoire of functional antibodies with similar properties was produced by appending short variable complementarity-determining region 3 (CDR3) onto the two antibody germ line segments most frequently found in human antibodies. With this strategy we concentrated sequence diversity in regions of the antibody structure that are centrally located in the antigen binding site, while leaving residues in more peripheral positions available for further mutagenesis aimed at improving the affinity of the selected antibodies. In addition, the library was tested by selecting antibodies against six biologically relevant antigens. Using only 0.3 microg of antigen eluted from a two-dimensional gel spot, we isolated binders specific for the ED-B domain of fibronectin, a marker of angiogenesis. These antibodies recognize the native antigen with affinities in the 10(7)-10(8) M-1 range, and perform well in immunosorbent assays, in two-dimensional Western blotting and in immunohistochemistry. The affinity of one anti-ED-B antibody was improved by 27-fold by combinatorially mutating six strategically selected residues in the heavy chain variable domain. A further 28-fold affinity improvement could be achieved by mutating residues 32 and 50 of the light chain. The resulting antibody, L19, bound to the ED-B domain of fibronectin with very high affinity (Kd = 54 pM), as determined by real-time interaction analysis with surface plasmon resonance detection, band shift analysis, and by competition experiments with electrochemiluminescent detection.
机译:我们报告基于蛋白质设计原理的噬菌体展示人类抗体库(> 3 x 10(8)克隆)的建设和使用。通过将短的可变互补决定区3(CDR3)附加到人类抗体中最常见的两个抗体种系片段上,可以生产出具有相似特性的功能抗体。通过这种策略,我们将序列多样性集中在位于抗原结合位点中心的抗体结构区域中,同时在更多的外围位置保留残基以用于进一步诱变,目的是提高所选抗体的亲和力。另外,通过选择针对六种生物学相关抗原的抗体来测试文库。仅使用从二维凝胶点洗脱的0.3微克抗原,我们分离了对纤连蛋白ED-B结构域(血管生成标记物)具有特异性的结合剂。这些抗体识别亲和力在10(7)-10(8)M-1范围内的天然抗原,并在免疫吸附测定,二维蛋白质印迹和免疫组织化学中表现良好。一种抗-ED-B抗体的亲和力通过在重链可变域中组合突变六个战略性选择的残基而提高了27倍。通过使轻链的残基32和50突变,可以实现28倍的亲和力进一步提高。产生的抗体L19以非常高的亲和力(Kd = 54 pM)与纤连蛋白的ED-B结构域结合,这通过表面等离振子共振检测的实时相互作用分析,带位移分析以及电化学发光的竞争实验确定检测。

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