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TSGIT:一种用于纯化天然和内含肽介导的连接就绪蛋白的 N 端和 C 端串联标签系统。

TSGIT: An N- and C-terminal tandem tag system for purification of native and intein-mediated ligation-ready proteins.

机构信息

Division of Biological and Environmental Sciences and Engineering, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

出版信息

Protein Sci. 2021 Feb;30(2):497-512. doi: 10.1002/pro.3989. Epub 2020 Nov 16.

Abstract

A large variety of fusion tags have been developed to improve protein expression, solubilization, and purification. Nevertheless, these tags have been combined in a rather limited number of composite tags and usually these composite tags have been dictated by traditional commercially-available expression vectors. Moreover, most commercially-available expression vectors include either N- or C-terminal fusion tags but not both. Here, we introduce TSGIT, a fusion-tag system composed of both N- and a C-terminal composite fusion tags. The system includes two affinity tags, two solubilization tags and two cleavable tags distributed at both termini of the protein of interest. Therefore, the N- and the C-terminal composite fusion tags in TSGIT are fully orthogonal in terms of both affinity selection and cleavage. For using TSGIT, we streamlined the cloning, expression, and purification procedures. Each component tag is selected to maximize its benefits toward the final construct. By expressing and partially purifying the protein of interest between the components of the TSGIT fusion, the full-length protein is selected over truncated forms, which has been a long-standing problem in protein purification. Moreover, due to the nature of the cleavable tags in TSGIT, the protein of interest is obtained in its native form without any additional undesired N- or C-terminal amino acids. Finally, the resulting purified protein is ready for efficient ligation with other proteins or peptides for downstream applications. We demonstrate the use of this system by purifying a large amount of native fluorescent mRuby3 protein and bacteriophage T7 gp2.5 ssDNA-binding protein.

摘要

已经开发出了大量的融合标签来提高蛋白质的表达、可溶性和纯化。然而,这些标签在相当有限的复合标签中组合在一起,通常这些复合标签是由传统的商业表达载体决定的。此外,大多数商业表达载体都包含 N 端或 C 端融合标签,但不包括两者都有。在这里,我们介绍了 TSGIT,这是一种由 N 端和 C 端复合融合标签组成的融合标签系统。该系统包括两个亲和标签、两个可溶性标签和两个可切割标签,分布在感兴趣的蛋白质的两端。因此,TSGIT 中的 N 端和 C 端复合融合标签在亲和选择和切割方面是完全正交的。为了使用 TSGIT,我们简化了克隆、表达和纯化程序。每个组件标签都经过选择,以最大限度地提高其对最终构建体的益处。通过在 TSGIT 融合的组件之间表达和部分纯化感兴趣的蛋白质,可以选择全长蛋白质而不是截短形式,这在蛋白质纯化中一直是一个长期存在的问题。此外,由于 TSGIT 中可切割标签的性质,感兴趣的蛋白质以其天然形式获得,没有任何额外的不需要的 N 端或 C 端氨基酸。最后,得到的纯化蛋白质可以直接用于与其他蛋白质或肽进行有效的连接,用于下游应用。我们通过纯化大量的天然荧光 mRuby3 蛋白和噬菌体 T7 gp2.5 ssDNA 结合蛋白来证明该系统的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6d4/7784762/95327218cabd/PRO-30-497-g001.jpg

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