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通过 Golden Gate 克隆技术轻松一步生成骆驼科 VHH 和禽类 scFv 噬菌体展示文库。

Facile One-Step Generation of Camelid VHH and Avian scFv Libraries for Phage Display by Golden Gate Cloning.

机构信息

Protein Engineering and Antibody Technologies (PEAT), Merck Healthcare KGaA, Darmstadt, Germany.

出版信息

Methods Mol Biol. 2023;2681:47-60. doi: 10.1007/978-1-0716-3279-6_4.

Abstract

Since its development in the 1980s, the Nobel Prize-awarded phage display technology has been one of the most commonly used in vitro selection technologies for the discovery of therapeutic and diagnostic antibodies. Besides the importance of selection strategy, one key component of the successful isolation of highly specific recombinant antibodies is the construction of high-quality phage display libraries. However, previous cloning protocols relied on a tedious multistep process with subsequent cloning steps for the introduction of first heavy and then light chain variable genetic antibody fragments (VH and VL). This resulted in reduced cloning efficiency, higher frequency of missing VH or VL sequences, as well as truncated antibody fragments. With the emergence of Golden Gate Cloning (GGC) for the generation of antibody libraries, the possibility of more facile library cloning has arisen. Here, we describe a streamlined one-step GGC strategy for the generation of camelid heavy chain only variable phage display libraries as well as the simultaneous introduction of heavy chain and light chain variable regions from the chicken into a scFv phage display vector.

摘要

自 20 世纪 80 年代发展以来,获得诺贝尔奖的噬菌体展示技术一直是发现治疗性和诊断性抗体的最常用的体外选择技术之一。除了选择策略的重要性之外,成功分离高度特异性重组抗体的关键因素之一是构建高质量的噬菌体展示文库。然而,以前的克隆方案依赖于繁琐的多步过程,随后的克隆步骤用于引入重链和轻链可变遗传抗体片段(VH 和 VL)。这导致克隆效率降低,缺失 VH 或 VL 序列的频率更高,以及抗体片段缺失。随着 Golden Gate Cloning(GGC)的出现,用于产生抗体文库的可能性更大。在这里,我们描述了一种简化的一步 GGC 策略,用于生成仅骆驼科重链的噬菌体展示文库,以及同时将鸡的重链和轻链可变区引入 scFv 噬菌体展示载体。

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