Department of Molecular Biotechnology, TU Dresden, 01062, Dresden, Germany.
Institute of Process Engineering and Environmental Technology, TU Dresden, 01062, Dresden, Germany.
Appl Microbiol Biotechnol. 2024 Jan 17;108(1):140. doi: 10.1007/s00253-023-12837-1.
Enzymes have become important tools in many industries. However, the full exploitation of their potential is currently limited by a lack of efficient and cost-effective methods for enzyme purification from microbial production. One technology that could solve this problem is foam fractionation. In this study, we show that diverse natural foam-stabilizing proteins fused as F-Tags to β-lactamase, penicillin G acylase, and formate dehydrogenase, respectively, are able to mediate foaming and recovery of the enzymes by foam fractionation. The catalytic activity of all three candidates is largely preserved. Under appropriate fractionation conditions, especially when a wash buffer is used, some F-Tags also allow nearly complete separation of the target enzyme from a contaminating protein. We found that a larger distance between the F-Tag and the target enzyme has a positive effect on the maintenance of catalytic activity. However, we did not identify any particular sequence motifs or physical parameters that influenced performance as an F-tag. The best results were obtained with a short helical F-Tag, which was originally intended to serve only as a linker sequence. The findings of the study suggest that the development of molecular tags that enable the establishment of surfactant-free foam fractionation for enzyme workup is a promising method. KEY POINTS: • Foam-stabilizing proteins mediate activity-preserving foam fractionation of enzymes • Performance as an F-Tag is not restricted to particular structural motifs • Separation from untagged protein benefits from low foam stability and foam washings.
酶已成为许多行业的重要工具。然而,由于缺乏从微生物生产中有效且具有成本效益的酶纯化方法,其潜力尚未得到充分利用。一种可以解决此问题的技术是泡沫分离。在这项研究中,我们表明,分别融合为 F-Tag 的各种天然泡沫稳定蛋白β-内酰胺酶、青霉素 G 酰化酶和甲酸脱氢酶能够通过泡沫分离介导酶的起泡和回收。这三种候选物的催化活性都得到了很大的保留。在适当的分级条件下,特别是当使用洗涤缓冲液时,一些 F-Tag 还可以使目标酶与污染蛋白几乎完全分离。我们发现,F-Tag 与目标酶之间的距离越大,对保持催化活性的效果越好。但是,我们没有发现任何特定的序列基序或物理参数会影响其作为 F-Tag 的性能。结果最好的是使用短螺旋 F-Tag,最初仅将其用作连接序列。该研究的结果表明,开发能够建立用于酶工作的无表面活性剂泡沫分离的分子标签是一种很有前途的方法。要点:•泡沫稳定蛋白介导具有活性保留的酶泡沫分离•作为 F-Tag 的性能不受特定结构基序的限制•与未标记蛋白的分离得益于低泡沫稳定性和泡沫洗涤。