Arnau José, Lauritzen Conni, Petersen Gitte E, Pedersen John
Unizyme Laboratories A/S, Dr. Neergaards vej 17, DK-2970 Hørsholm, Denmark.
Protein Expr Purif. 2011 Sep 2. doi: 10.1016/j.pep.2011.08.013.
Affinity tags are highly efficient tools for protein purification. They allow the purification of virtually any protein without any prior knowledge of its biochemical properties. The use of affinity tags has therefore become widespread in several areas of research e.g., high throughput expression studies aimed at finding a biological function to large numbers of yet uncharacterized proteins. In some cases, the presence of the affinity tag in the recombinant protein is unwanted or may represent a disadvantage for the projected application of the protein, like for clinical use. Therefore, an increasing number of approaches are available at present that are designed for the removal of the affinity tag from the recombinant protein. Most of these methods employ recombinant endoproteases that recognize a specific sequence. These process enzymes can subsequently be removed from the process by affinity purification, since they also include a tag. Here, a survey of the most common affinity tags and the current methods for tag removal is presented, with special emphasis on the removal of N-terminal histidine tags using TAGZyme, a system based on exopeptidase cleavage. In the quest to reduce the significant costs associated with protein purification at large scale, relevant aspects involved in the development of downstream processes for pharmaceutical protein production that incorporate a tag removal step are also discussed. A comparison of the yield of standard vs. affinity purification together with an example of tag removal using TAGZyme is also included.
亲和标签是用于蛋白质纯化的高效工具。它们能够纯化几乎任何蛋白质,而无需事先了解其生化特性。因此,亲和标签的使用已在多个研究领域广泛普及,例如旨在为大量尚未表征的蛋白质寻找生物学功能的高通量表达研究。在某些情况下,重组蛋白中的亲和标签是不需要的,或者可能对该蛋白质的预期应用(如临床应用)构成不利因素。因此,目前有越来越多的方法可用于从重组蛋白中去除亲和标签。这些方法大多采用识别特定序列的重组内切蛋白酶。这些加工酶随后可以通过亲和纯化从加工过程中去除,因为它们也包含一个标签。本文介绍了最常见的亲和标签以及当前去除标签的方法,特别强调了使用基于外肽酶切割的TAGZyme系统去除N端组氨酸标签。在努力降低大规模蛋白质纯化相关的高昂成本的过程中,还讨论了制药蛋白质生产下游工艺开发中涉及标签去除步骤的相关方面。还包括标准纯化与亲和纯化产率的比较以及使用TAGZyme进行标签去除的示例。