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首页> 外文期刊>Immunology Letters >Isolation of a human anti-epidermal growth factor receptor Fab antibody, EG-19-11, with subnanomolar affinity from naive immunoglobulin repertoires using a hierarchical antibody library system.
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Isolation of a human anti-epidermal growth factor receptor Fab antibody, EG-19-11, with subnanomolar affinity from naive immunoglobulin repertoires using a hierarchical antibody library system.

机译:使用分级抗体库系统从天然免疫球蛋白库中分离出亚纳摩尔亲和力的人抗表皮生长因子受体Fab抗体EG-19-11。

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Specific antibodies that possess a subnanomolar affinity are very difficult to obtain from human naive immunoglobulin repertoires without the use of lengthy affinity optimization procedures. Here, we designed a hierarchical phage-displayed antibody library system to generate an enormous diversity of combinatorial Fab fragments (6x10(17)) and attempted to isolate high-affinity Fabs against the human epidermal growth factor receptor (EGFR). A primary antibody library, designated HuDVFab-8L, comprising 4.5x10(9) human naive heavy chains and eight unspecified human naive light chains was selected against the EGFR-Fc protein by biopanning, and four anti-EGFR Fab clones were isolated. Because one of the Fab clones, denoted EG-L2-11, recognized a native EGFR expressed on A431 cells, the heavy chain of the Fab was shuffled with a human naive light chain repertoire with a diversity of 1.4x10(8) and selected a second time against the EGFR-Fc protein again. One EG-L2-11 variant, denoted EG-19-11, recognized an EGFR epitope that was almost the same as that bound by cetuximab and had a K(D) of approximately 540 pM for soluble EGFR, which is about 7-fold higher than that of the FabC225 derived from cetuximab. This variant was also internalized by A431 cells, likely via receptor-mediated endocytosis, and it efficiently inhibited EGF-mediated tyrosine phosphorylation of the EGFR. These results demonstrate that the use of our hierarchical antibody library system is advantageous in generating fully human antibodies especially with a therapeutic purpose.
机译:如果不使用冗长的亲和力优化程序,很难从人类幼稚的免疫球蛋白库中获​​得具有亚纳摩尔亲和力的特异性抗体。在这里,我们设计了一个分级的噬菌体展示抗体库系统,以产生巨大的组合Fab片段多样性(6x10(17)),并尝试分离出针对人类表皮生长因子受体(EGFR)的高亲和力Fab。通过生物淘选针对EGFR-Fc蛋白选择了一个名为HuDVFab-8L的主要抗体文库,该文库包含4.5x10(9)个人类幼稚重链和8个未指定人类幼稚轻链,并分离了四个抗EGFR Fab克隆。由于其中一个Fab克隆(称为EG-L2-11)识别了在A431细胞上表达的天然EGFR,因此Fab的重链被人类天真的轻链组成部分改组,多样性为1.4x10(8),并选择了一个第二次再次针对EGFR-Fc蛋白。一种称为EG-19-11的EG-L2-11变体识别的EGFR表位与西妥昔单抗结合的表位几乎相同,可溶性EGFR的K(D)约为540 pM,约为7倍。高于来自西妥昔单抗的FabC225。该变体也可能通过受体介导的内吞作用而被A431细胞内在化,并有效抑制EGFR的EGF介导的酪氨酸磷酸化。这些结果表明,使用我们的分层抗体文库系统有利于产生完全人的抗体,特别是具有治疗目的的抗体。

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