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两种涉及生物素/亲和素相互作用的蛋白质纯化的色谱方案,均在天然条件下进行。

Two chromatographic schemes for protein purification involving the biotin/avidin interaction under native conditions.

机构信息

King Abdullah University of Science and Technology, Division of Biological and Environmental Sciences and Engineering, Thuwal 23955, Saudi Arabia.

King Abdullah University of Science and Technology, Division of Biological and Environmental Sciences and Engineering, Thuwal 23955, Saudi Arabia.

出版信息

J Chromatogr A. 2020 Jun 21;1621:461051. doi: 10.1016/j.chroma.2020.461051. Epub 2020 Mar 17.

Abstract

The strength of the biotin/avidin interaction makes it an ideal tool for the purification of biotin-labeled proteins via avidin-coupled resin with high specificity and selectivity. Nevertheless, this tight binding comes at an extra cost of performing the elution step under denaturing conditions. Weakening the biotin/avidin interaction improves the elution conditions, but only to mild or harsh denaturing buffers with the drawback of reducing the specificity and selectivity of this interaction. Here, we present two chromatographic protein purification schemes that are well-suited for application under native conditions thus preserving the strength of the biotin/avidin interaction. In the first scheme, we introduce a biotin-labeled SUMO-tag to each of human flap endonuclease 1 and Escherichia coli replication termination protein Tus, and elute both proteins by performing on-resin cleavage using SUMO protease. In the second scheme, we immobilize biotin-labeled human proliferating cell nuclear antigen (PCNA) on the avidin-coupled resin and use the resulting resin as a tag-free affinity method to purify the PCNA-binding protein human DNA Ligase 1. Furthermore, we streamlined the protein biotinylation protocol by constructing a single plasmid expression system that ensures high level of expression and solubility for each of the target protein bearing the biotin-tag and the enzyme responsible for the in vivo biotinylation reaction. Both chromatographic schemes resulted in a high yield of pure proteins in their native form.

摘要

生物素/亲和素相互作用的强度使其成为通过亲和素偶联树脂纯化生物素标记蛋白的理想工具,具有高度特异性和选择性。然而,这种紧密结合是以在变性条件下进行洗脱步骤的额外代价为代价的。削弱生物素/亲和素相互作用可以改善洗脱条件,但只能在温和或苛刻的变性缓冲液中进行,其缺点是降低了这种相互作用的特异性和选择性。在这里,我们提出了两种适用于天然条件下应用的蛋白质色谱纯化方案,从而保持了生物素/亲和素相互作用的强度。在第一个方案中,我们在人类 flap endonuclease 1 和 Escherichia coli replication termination protein Tus 的每个分子上引入了生物素标记的 SUMO 标签,并通过在树脂上进行 SUMO 蛋白酶切割来洗脱这两种蛋白质。在第二个方案中,我们将生物素标记的人类增殖细胞核抗原 (PCNA) 固定在亲和素偶联树脂上,并将得到的树脂用作无标签亲和方法来纯化 PCNA 结合蛋白人类 DNA Ligase 1。此外,我们通过构建一个单一的质粒表达系统来简化蛋白质生物素化方案,该系统确保每个带有生物素标签的靶蛋白和负责体内生物素化反应的酶都具有高水平的表达和可溶性。这两种色谱方案都以其天然形式获得了高纯度蛋白质的高产率。

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