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利用大肠杆菌表达系统和点印迹分析筛选与荧光蛋白融合的 IgG Fc 结构域结合肽。

Efficient selection of IgG Fc domain-binding peptides fused to fluorescent protein using E. coli expression system and dot-blotting assay.

机构信息

BioNanotechnology Research Center, KRIBB and Nanobiotechnology Division of UST Daejeon, Republic of Korea.

出版信息

Peptides. 2010 Feb;31(2):202-6. doi: 10.1016/j.peptides.2009.12.009. Epub 2009 Dec 16.

Abstract

Antibody purification technology is of particular industrial importance due to the rapidly increasing use of antibodies in protein purification, diagnostic and therapeutic applications. Such purification has mostly relied on affinity chromatography using Protein A or Protein G as affinity ligands. Several synthetic ligands have also been developed to overcome the disadvantages associated with protein affinity ligands, which include high cost, low stability and possible contamination if the proteins have been expressed in bacteria. In the present study, a convenient selection method for new peptides binding to the IgG Fc domain was developed. The method includes the construction of a DNA library fused to the 5'-position of the eGFP gene expressed from a constitutive vector, expression of the library in Escherichia coli, fluorescence-based screening, and determination of the antibody-binding affinities of selected peptides using surface plasmon resonance. With this method, five novel peptides were identified as new affinity ligands for the IgG Fc domain, and the binding affinities were appropriate for antibody purification. This method is a convenient alternative to phage or bacterial surface display and can be used in the routine biochemistry laboratory.

摘要

抗体纯化技术在蛋白质纯化、诊断和治疗应用中抗体的使用迅速增加的情况下具有特殊的工业重要性。这种纯化主要依赖于使用蛋白 A 或蛋白 G 作为亲和配体的亲和层析。还开发了几种合成配体来克服与蛋白亲和配体相关的缺点,这些缺点包括高成本、低稳定性以及如果蛋白质在细菌中表达可能发生的污染。在本研究中,开发了一种用于与 IgG Fc 结构域结合的新肽的方便选择方法。该方法包括构建与从组成型载体表达的 eGFP 基因的 5'位置融合的 DNA 文库,在大肠杆菌中表达文库,基于荧光的筛选,以及使用表面等离子体共振法测定所选肽的抗体结合亲和力。使用该方法,鉴定了五个新的肽作为 IgG Fc 结构域的新亲和配体,并且结合亲和力适合抗体纯化。该方法是噬菌体或细菌表面展示的便捷替代方法,可用于常规生物化学实验室。

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