Institut fur Biochemie und Biotechnologie, Martin-Luther-Universit at Halle-Wittenberg, Kurt-Mothes Strasse 3, D-06120 Halle/Saale, Germany.
Biol Chem. 2013 Aug;394(8):995-1004. doi: 10.1515/hsz-2013-0116.
In response to advances in proteomics research and the use of proteins in medical and biotechnological applications, recombinant protein production and the design of specific protein characteristics and functions has become a widely used technology. In this context, protein fusion tags have been developed as indispensable tools for protein expression, purification, and the design of functionalized surfaces or artificially bifunctional proteins. Here we summarize how positively or negatively charged polyionic fusion peptides with or without an additional cysteine can be used as protein tags for protein expression and purification, for matrix-assisted refolding of aggregated protein, and for coupling of proteins either to technologically relevant matrices or to other proteins. In this context we used cysteine-containing polyionic fusion peptides for the design of immunotoxins. In general, polyionic fusion tags can be considered as a multifunctional module in protein technology.
针对蛋白质组学研究的进展以及蛋白质在医学和生物技术应用中的应用,重组蛋白生产以及特定蛋白质特性和功能的设计已成为一种广泛应用的技术。在这种情况下,蛋白质融合标签已被开发为蛋白质表达、纯化以及功能化表面或人工双功能蛋白质设计不可或缺的工具。在这里,我们总结了带或不带额外半胱氨酸的带正电荷或带负电荷的聚离子融合肽如何可被用作蛋白质表达和纯化的标签、用于聚集蛋白质的基质辅助复性、以及用于将蛋白质偶联到技术相关的基质或其他蛋白质。在此背景下,我们使用含半胱氨酸的聚离子融合肽设计免疫毒素。一般来说,聚离子融合标签可被视为蛋白质技术中的多功能模块。