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在大肠杆菌中生产带有融合蛋白CusF3H标签的重组蛋白。

Production of recombinant proteins in Escherichia coli tagged with the fusion protein CusF3H.

作者信息

Vargas-Cortez Teresa, Morones-Ramirez Jose Ruben, Balderas-Renteria Isaias, Zarate Xristo

机构信息

Universidad Autonoma de Nuevo Leon, Facultad de Ciencias Quimicas, San Nicolas de los Garza, NL 66455, Mexico.

Universidad Autonoma de Nuevo Leon, Facultad de Ciencias Quimicas, San Nicolas de los Garza, NL 66455, Mexico; Universidad Autonoma de Nuevo Leon, Centro de Investigacion en Biotecnologia y Nanotoxicologia, Facultad de Ciencias Quimicas, Parque de Investigacion e Innovacion Tecnologica, Apodaca, NL 66629, Mexico.

出版信息

Protein Expr Purif. 2017 Apr;132:44-49. doi: 10.1016/j.pep.2017.01.006. Epub 2017 Jan 11.

Abstract

Recombinant protein expression in the bacterium Escherichia coli still is the number one choice for large-scale protein production. Nevertheless, many complications can arise using this microorganism, such as low yields, the formation of inclusion bodies, and the requirement for difficult purification steps. Most of these problems can be solved with the use of fusion proteins. Here, the use of the metal-binding protein CusF3H+ is described as a new fusion protein for recombinant protein expression and purification in E. coli. We have previously shown that CusF produces large amounts of soluble protein, with low levels of formation of inclusion bodies, and that proteins can be purified using IMAC resins charged with Cu(II) ions. CusF3H+ is an enhanced variant of CusF, formed by the addition of three histidine residues at the N-terminus. These residues then can bind Ni(II) ions allowing improved purity after affinity chromatography. Expression and purification of Green Fluorescent Protein tagged with CusF3H+ showed that the mutation did not alter the capacity of the fusion protein to increase protein expression, and purity improved considerably after affinity chromatography with immobilized nickel ions; high yields are obtained after tag-removal since CusF3H+ is a small protein of just 10 kDa. Furthermore, the results of experiments involving expression of tagged proteins having medium to large molecular weights indicate that the presence of the CusF3H+ tag improves protein solubility, as compared to a His-tag. We therefore endorse CusF3H+ as a useful alternative fusion protein/affinity tag for production of recombinant proteins in E. coli.

摘要

在大肠杆菌中进行重组蛋白表达仍然是大规模生产蛋白的首选方法。然而,使用这种微生物会出现许多复杂问题,比如产量低、形成包涵体以及需要繁琐的纯化步骤。这些问题大多可以通过使用融合蛋白来解决。在此,金属结合蛋白CusF3H⁺被描述为一种用于在大肠杆菌中进行重组蛋白表达和纯化的新型融合蛋白。我们之前已经表明,CusF能产生大量可溶性蛋白,包涵体形成水平较低,并且蛋白可以使用负载有Cu(II)离子的IMAC树脂进行纯化。CusF3H⁺是CusF的增强变体,通过在N端添加三个组氨酸残基形成。这些残基随后可以结合Ni(II)离子,从而在亲和层析后提高纯度。用CusF3H⁺标记的绿色荧光蛋白的表达和纯化表明,该突变并未改变融合蛋白增加蛋白表达的能力,并且在用固定化镍离子进行亲和层析后纯度有显著提高;由于CusF3H⁺是一种仅10 kDa的小蛋白,去除标签后可获得高产率。此外,涉及表达中等到大分子质量的标记蛋白的实验结果表明,与His标签相比,CusF3H⁺标签的存在提高了蛋白的溶解度。因此,我们认可CusF3H⁺作为一种用于在大肠杆菌中生产重组蛋白的有用的替代融合蛋白/亲和标签。

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