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使用 mCherry 和 YFP 纳米抗体亲和基质进行高效重组蛋白纯化。

High-efficiency recombinant protein purification using mCherry and YFP nanobody affinity matrices.

机构信息

Department of Biochemistry and Molecular Biology, Mayo Clinic, Rochester, Minnesota, USA.

出版信息

Protein Sci. 2022 Sep;31(9):e4383. doi: 10.1002/pro.4383.

Abstract

Mammalian cell lines are important expression systems for large proteins and protein complexes, particularly when the acquisition of post-translational modifications in the protein's native environment is desired. However, low or variable transfection efficiencies are challenges that must be overcome to use such an expression system. Expression of recombinant proteins as a fluorescent protein fusion enables real-time monitoring of protein expression, and also provides an affinity handle for one-step protein purification using a suitable affinity reagent. Here, we describe a panel of anti-GFP and anti-mCherry nanobody affinity matrices and their efficacy for purification of GFP/YFP or mCherry fusion proteins. We define the molecular basis by which they bind their target proteins using X-ray crystallography. From these analyses, we define an optimal pair of nanobodies for purification of recombinant protein tagged with GFP/YFP or mCherry, and demonstrate these nanobody-sepharose supports are stable to many rounds of cleaning and extended incubation in denaturing conditions. Finally, we demonstrate the utility of the mCherry-tag system by using it to purify recombinant human topoisomerase 2α expressed in HEK293F cells. The mCherry-tag and GFP/YFP-tag expression systems can be utilized for recombinant protein expression individually or in tandem for mammalian protein expression systems where real-time monitoring of protein expression levels and a high-efficiency purification step is needed.

摘要

哺乳动物细胞系是表达大蛋白和蛋白复合物的重要体系,特别是当需要在蛋白的天然环境中获得翻译后修饰时。然而,低转染效率或可变转染效率是必须克服的挑战,才能使用这种表达系统。将重组蛋白表达为荧光蛋白融合体能够实时监测蛋白表达,并且还为使用合适的亲和试剂进行一步蛋白纯化提供了亲和处理。在这里,我们描述了一组抗 GFP 和抗 mCherry 纳米抗体亲和基质及其用于纯化 GFP/YFP 或 mCherry 融合蛋白的功效。我们使用 X 射线晶体学定义了它们结合靶蛋白的分子基础。通过这些分析,我们为 GFP/YFP 或 mCherry 标记的重组蛋白纯化定义了一对最佳的纳米抗体,并证明这些纳米抗体-琼脂糖支持物在许多轮清洗和在变性条件下延长孵育中是稳定的。最后,我们通过使用 mCherry 标记系统来纯化在 HEK293F 细胞中表达的重组人拓扑异构酶 2α,证明了 mCherry 标记系统的实用性。mCherry 标记和 GFP/YFP 标记表达系统可单独用于重组蛋白表达,也可串联用于哺乳动物蛋白表达系统,在该系统中需要实时监测蛋白表达水平和高效的纯化步骤。

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