Zhang Guoqiang, Schmidt-Dannert Sarah, Quin Maureen B, Schmidt-Dannert Claudia
Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, St. Paul, MN, United States.
Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, St. Paul, MN, United States.
Methods Enzymol. 2019;617:323-362. doi: 10.1016/bs.mie.2018.12.016. Epub 2019 Feb 10.
Biocatalysis is emerging as an alternative approach to chemical synthesis of industrially relevant complex molecules. To obtain suitable yields of compounds in a cost-effective manner, biocatalytic reaction cascades must be efficient, robust, and self-sufficient. One approach is to immobilize biocatalysts on a solid support, stabilizing the enzymes and providing optimal microenvironments for reaction sequences. Protein-based scaffolds can be designed as immobilization platforms for biocatalysts, enabling the genetically encoded spatial organization of single enzymes and multistep enzyme cascades. Additionally, protein scaffolds are versatile, are easily adapted, and remain robust under different reaction conditions. In this chapter, we describe methods for the design and production of a self-assembling protein scaffold system for in vitro coimmobilization of biocatalytic cascade enzymes. We provide detailed methods for the characterization of the protein scaffolds, as well as approaches to load biocatalytic cargo enzymes and test activity of immobilized cascades. In addition, we also discuss methods for the development of a scaffold building block toolbox with different surface properties, which could be adapted for a diversity of biocatalysts requiring alternative microenvironments for function.
生物催化正在成为工业相关复杂分子化学合成的一种替代方法。为了以具有成本效益的方式获得合适的化合物产量,生物催化反应级联必须高效、稳健且自给自足。一种方法是将生物催化剂固定在固体载体上,稳定酶并为反应序列提供最佳微环境。基于蛋白质的支架可设计为生物催化剂的固定平台,实现单一酶和多步酶级联的基因编码空间组织。此外,蛋白质支架具有通用性,易于改造,并且在不同反应条件下仍保持稳健。在本章中,我们描述了用于设计和生产用于体外共固定生物催化级联酶的自组装蛋白质支架系统的方法。我们提供了蛋白质支架表征的详细方法,以及加载生物催化负载酶和测试固定级联活性的方法。此外,我们还讨论了开发具有不同表面性质的支架构建模块工具箱的方法,该工具箱可适用于需要替代微环境来发挥功能的多种生物催化剂。