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补充亲和标签对MBP融合蛋白溶解性的差异影响。

Differential effects of supplementary affinity tags on the solubility of MBP fusion proteins.

作者信息

Routzahn Karen M, Waugh David S

机构信息

Protein Engineering Section, Macromolecular Crystallography Laboratory, Center for Cancer Research, National Cancer Institute at Frederick, P.O. Box B, Frederick, Maryland 21702, USA.

出版信息

J Struct Funct Genomics. 2002;2(2):83-92. doi: 10.1023/a:1020424023207.

Abstract

It is difficult to imagine any strategy for high-throughput protein expression and purification that does not involve genetically engineered affinity tags. Because of its ability to enhance the solubility and promote the proper folding of its fusion partners, Escherichia coli maltose-binding protein (MBP) is a particularly useful affinity tag. However, not all MBP fusion proteins bind efficiently to amylose resin, and even when they do it is usually not possible to obtain a sample of adequate purity after a single affinity step. To address this problem, we endeavored to incorporate supplemental affinity tags within the framework of an MBP fusion protein. We show that both the nature of the supplemental tags and their location can influence the ability of MBP to promote the solubility of its fusion partners. The most promising configurations for high-throughput protein expression and purification appear to be a fusion protein with a biotin acceptor peptide (BAP) on the N-terminus of MBP and/or a hexahistidine tag (His-tag) on the C-terminus of the passenger protein.

摘要

很难想象有哪种高通量蛋白质表达和纯化策略不涉及基因工程亲和标签。由于大肠杆菌麦芽糖结合蛋白(MBP)能够提高融合伴侣的溶解度并促进其正确折叠,因此它是一种特别有用的亲和标签。然而,并非所有MBP融合蛋白都能有效地与直链淀粉树脂结合,即使它们能够结合,通常也不可能在单次亲和步骤后获得纯度足够的样品。为了解决这个问题,我们致力于在MBP融合蛋白的框架内引入补充亲和标签。我们表明,补充标签的性质及其位置都会影响MBP促进其融合伴侣溶解度的能力。对于高通量蛋白质表达和纯化而言,最有前景的配置似乎是在MBP的N端带有生物素受体肽(BAP)和/或在乘客蛋白的C端带有六组氨酸标签(His-tag)的融合蛋白。

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