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Screening of Human Antibody Fab Fragment against HBsAg and the Construction of its dsFv Form

机译:抗HBsAg抗体Fab片段的筛选及其dsFv形式的构建

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摘要

The objective of this study was to pursue the techniques involving the screening of the human antibody Fab fragment against hepatitis B virus surface antigen (HBsAg) and the construction of its disulfide-stabilized Fv fragment (dsFv). The phage antibody Fab fragments against HBsAg were screened from the human combinatorial immunoglobulin library. Sequence analysis revealed that its heavy chain gene was complete, but the light chain gene was lost. To improve the affinity of the antibody by chain shuffling, a human antibody light chain gene repertoire was generated by reverse transcriptase-polymerase chain reaction (RT-PCR) from the human peripheral blood lymphocytes. A phage antibody sub-library was then constructed by inserting the light chain gene repertoire into the phagmid that contained the Fd gene. Five clones with appreciably higher absorbance than that of the original clones were obtained, which indicated that the affinity of the light chain-shuffled phage antibodies was improved. Then, the mutated genes of dsFv against HBsAg were constructed by using PCR-based point mutagenesis method. Purified VH and VL proteins were folded into a 25-kDa protein, designated as anti-HBsAg dsFv. ELISA and competition ELISA revealed that the dsFv maintained the specificity of the Fab by binding to HBsAg, even through with a lower binding activity. These results have facilitated the undertaking of further functional analyses of the constructed dsFv, and may therefore provide an improved technique for the production and application of dsFvs against HBsAg.
机译:这项研究的目的是追求包括筛选针对乙型肝炎病毒表面抗原(HBsAg)的人抗体Fab片段及其二硫键稳定的Fv片段(dsFv)的技术。从人组合免疫球蛋白文库中筛选针对HBsAg的噬菌体抗体Fab片段。序列分析表明其重链基因完整,但轻链基因丢失。为了通过链改组提高抗体的亲和力,通过逆转录酶-聚合酶链反应(RT-PCR)从人外周血淋巴细胞产生人抗体轻链基因库。然后通过将轻链基因库插入含有Fd基因的噬菌粒中来构建噬菌体抗体子库。获得了五个吸光度比原始克隆高得多的克隆,这表明轻链改组的噬菌体抗体的亲和力得到了改善。然后,通过基于PCR的点诱变方法构建了针对HBsAg的dsFv突变基因。将纯化的VH和VL蛋白折叠成25 kDa蛋白,称为抗HBsAg dsFv。 ELISA和竞争ELISA显示dsFv通过结合HBsAg保持了Fab的特异性,即使结合活性较低。这些结果促进了对所构建的dsFv的进一步功能分析,并且因此可以为生产和应用针对HBsAg的dsFv提供改进的技术。

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