超大容量天然噬菌体纳米抗体库的构建

Construction of an ultra-Large naive phage nanobody library

  • 摘要:
    目的 本研究拟构建超大容量天然噬菌体纳米抗体库,用于传染病诊断和治疗用的抗体筛选。
    方法 选取1只健康羊驼的脾脏和100只健康羊驼的外周血,提取总RNA并反转录合成cDNA。 通过两次聚合酶链反应(PCR)扩增羊驼重链抗体可变区(VHH)片段,将酶切纯化扩增产物与载体pSCD-2连接,电转化大肠埃希菌TG1感受态细胞,构建噬菌体纳米抗体展示文库。 并对抗体库转化阳性插入率、纳米抗体序列以及抗体库污染情况进行检测和分析。
    结果 成功构建累计库容量达1.165×1012的天然纳米抗体细胞库,噬菌体展示库滴度>1013 CFU/mL。 抗体库转化阳性插入率为98.33%(177/180)。 随机选取125个PCR鉴定阳性克隆测序,纳米抗体序列均为独特序列。纳米抗体的互补决定区3的氨基酸长度为6~26个氨基酸,呈正态分布,氨基酸序列存在较大差异。 细胞抗体库和噬菌体展示抗体库均无烈性噬菌体污染。
    结论 本研究成功构建了超大容量天然纳米抗体库,该抗体库多样性良好,为后续从中筛选出具有应用价值的特异性的纳米抗体奠定了基础。

     

    Abstract:
    Objective  This study aims to construct an ultra-large naive phage display nanobody library for screening antibody,for the diagnosis and treatment of infectious diseases.
    Methods  Total RNA was extracted from the spleen of one healthy alpaca and the peripheral blood of 100 healthy alpacas,then reversely transcribed into cDNA. The variable regions of the heavy-chain antibodies (VHH) were amplified by two rounds of polymerase chain reaction (PCR).The purified amplified products were ligated with the pSCD-2 vector,and then transformed into electrocompetent Escherichia coli TG1 cells to construct a phage display nanobody library.The positive transformation insertion rates,nanobody sequences,and contamination of antibody library were deteced and analyzed.
    Results  One naive nanobody library were successfully constructed, with a cumulative capacity of library reaching 1.165×1012, and the titer of the phage display library exceeded 1013 CFU/mL.The positive transformation insertion rates of nanobody library was 98.33% (177/180). Of the 125 randomly chosen PCR-positive clones for sequencing,all nanobody sequences were unique. The length of the complementarity-determining region 3 of the nanobodies ranged from 6 to 26 amino acids, showing a normal distribution and significant sequence diversity.No virulent phage contamination was found in the bacterial and and phage display antibody libraries.
    Conclusion  This study successfully constructed an ultra-large naive nanobody library with good diversity,laying a foundation for screening valuable and specific nanobodies.

     

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