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生物素标记蛋白:用于基于酶联免疫吸附测定的高效血清学诊断及基于噬菌体展示的亲和选择的试剂

Biotin-tagged proteins: Reagents for efficient ELISA-based serodiagnosis and phage display-based affinity selection.

作者信息

Verma Vaishali, Kaur Charanpreet, Grover Payal, Gupta Amita, Chaudhary Vijay K

机构信息

Centre for Innovation in Infectious Disease Research, Education and Training (CIIDRET), University of Delhi South Campus, New Delhi, India.

Department of Biochemistry, University of Delhi South Campus, New Delhi, India.

出版信息

PLoS One. 2018 Jan 23;13(1):e0191315. doi: 10.1371/journal.pone.0191315. eCollection 2018.

Abstract

The high-affinity interaction between biotin and streptavidin has opened avenues for using recombinant proteins with site-specific biotinylation to achieve efficient and directional immobilization. The site-specific biotinylation of proteins carrying a 15 amino acid long Biotin Acceptor Peptide tag (BAP; also known as AviTag) is effected on a specific lysine either by co-expressing the E. coli BirA enzyme in vivo or by using purified recombinant E. coli BirA enzyme in the presence of ATP and biotin in vitro. In this paper, we have designed a T7 promoter-lac operator-based expression vector for rapid and efficient cloning, and high-level cytosolic expression of proteins carrying a C-terminal BAP tag in E. coli with TEV protease cleavable N-terminal deca-histidine tag, useful for initial purification. Furthermore, a robust three-step purification pipeline integrated with well-optimized protocols for TEV protease-based H10 tag removal, and recombinant BirA enzyme-based site-specific in vitro biotinylation is described to obtain highly pure biotinylated proteins. Most importantly, the paper demonstrates superior sensitivities in indirect ELISA with directional and efficient immobilization of biotin-tagged proteins on streptavidin-coated surfaces in comparison to passive immobilization. The use of biotin-tagged proteins through specific immobilization also allows more efficient selection of binders from a phage-displayed naïve antibody library. In addition, for both these applications, specific immobilization requires much less amount of protein as compared to passive immobilization and can be easily multiplexed. The simplified strategy described here for the production of highly pure biotin-tagged proteins will find use in numerous applications, including those, which may require immobilization of multiple proteins simultaneously on a solid surface.

摘要

生物素与链霉亲和素之间的高亲和力相互作用为利用具有位点特异性生物素化的重组蛋白实现高效定向固定开辟了道路。携带15个氨基酸长的生物素受体肽标签(BAP;也称为AviTag)的蛋白质的位点特异性生物素化,可通过在体内共表达大肠杆菌BirA酶,或在体外ATP和生物素存在的情况下使用纯化的重组大肠杆菌BirA酶,作用于特定的赖氨酸来实现。在本文中,我们设计了一种基于T7启动子 - lac操纵子的表达载体,用于在大肠杆菌中快速高效地克隆以及携带C端BAP标签且N端带有可被TEV蛋白酶切割的十组氨酸标签的蛋白质的高水平胞质表达,这对初始纯化很有用。此外,还描述了一个强大的三步纯化流程,该流程整合了经过优化的方案,用于基于TEV蛋白酶去除H10标签以及基于重组BirA酶的位点特异性体外生物素化,以获得高度纯化的生物素化蛋白质。最重要的是,与被动固定相比,本文证明了在间接ELISA中,将生物素标记的蛋白质定向高效固定在链霉亲和素包被的表面具有更高的灵敏度。通过特异性固定使用生物素标记的蛋白质,还能更有效地从噬菌体展示的原始抗体库中筛选结合物。此外,对于这两种应用,与被动固定相比,特异性固定所需的蛋白量要少得多,并且可以轻松实现多重化。本文所述的用于生产高度纯化的生物素标记蛋白质的简化策略将在众多应用中得到应用,包括那些可能需要在固体表面同时固定多种蛋白质的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84b7/5779676/ea2c9afeb15d/pone.0191315.g001.jpg

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