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利用“链霉亲和标签”和固定化重组核心抗生物素蛋白一步亲和纯化细菌产生的蛋白质。

One-step affinity purification of bacterially produced proteins by means of the "Strep tag" and immobilized recombinant core streptavidin.

作者信息

Schmidt T G, Skerra A

机构信息

Abteilung Molekulare Membranbiologie, Max-Planck-Institut für Biophysik, Frankfurt am Main, Germany.

出版信息

J Chromatogr A. 1994 Aug 5;676(2):337-45. doi: 10.1016/0021-9673(94)80434-6.

Abstract

The "Strep tag" is a nine amino acid peptide with intrinsic streptavidin-binding activity. If this sequence is genetically fused to the C-terminus of a polypeptide the recombinant protein can be directly purified by affinity chromatography from the host cell extract on immobilized streptavidin. However, variations were observed in the suitability of different commercial streptavidin-agarose preparations for this purpose. Therefore, the influence of the source of streptavidin, the coupling chemistry, and the nature of the affinity chromatography resin was investigated. A procedure was developed for the production of recombinant core streptavidin in Escherichia coli, followed by its efficient refolding and purification with an overall yield of up to 140 mg functional protein per 11 bacterial culture. When coupled to activated CH-Sepharose 4B this truncated form of streptavidin showed a performance in the affinity chromatography of Strep tag fusion proteins that was superior to all other combinations tested. In contrast to its conventional preparation from Streptomyces strains the recombinant core streptavidin was produced without a proteolytic processing step. Thus, deleterious effects during the streptavidin affinity purification of proteins due to residual proteolytic activity in the immobilized streptavidin were avoided. The versatility of the optimized purification system was demonstrated with five different Strep tag fusion proteins.

摘要

“链霉亲和标签”是一种具有内在抗生物素蛋白结合活性的九氨基酸肽。如果该序列与多肽的C末端进行基因融合,重组蛋白可通过固定化抗生物素蛋白从宿主细胞提取物中直接进行亲和层析纯化。然而,观察到不同商业抗生物素蛋白-琼脂糖制剂用于此目的的适用性存在差异。因此,研究了抗生物素蛋白来源、偶联化学以及亲和层析树脂性质的影响。开发了一种在大肠杆菌中生产重组核心抗生物素蛋白的方法,随后对其进行高效复性和纯化,每升细菌培养物的功能蛋白总产量高达140毫克。当与活化的CH-琼脂糖4B偶联时,这种截短形式的抗生物素蛋白在链霉亲和标签融合蛋白的亲和层析中表现优于所有其他测试组合。与从链霉菌菌株常规制备抗生物素蛋白不同,重组核心抗生物素蛋白的生产无需蛋白水解加工步骤。因此,避免了固定化抗生物素蛋白中残留蛋白水解活性在抗生物素蛋白亲和纯化蛋白质过程中产生的有害影响。用五种不同的链霉亲和标签融合蛋白证明了优化纯化系统的通用性。

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