Institute of Biochemistry, Dept. of Biotechnology & Enzyme Catalysis, Greifswald University, 17487 Greifswald, Germany.
Institute of Biochemistry, Dept. of Biotechnology & Enzyme Catalysis, Greifswald University, 17487 Greifswald, Germany.
Biotechnol Adv. 2018 Jan-Feb;36(1):247-263. doi: 10.1016/j.biotechadv.2017.11.007. Epub 2017 Nov 22.
Baeyer-Villiger monooxygenases (BVMOs) are versatile biocatalysts for the conversion of ketones to lactones or esters while also being able to efficiently oxidize sulfides to sulfoxides. However, there are limitations for the application of BVMOs in synthesis. In this review we provide an overview of the protein engineering studies aiming at optimizing different properties of BVMOs. We describe hot spots in the active sites of certain BVMOs that have been successfully targeted for changing the substrate scope, as well as the possibility to influence this property by allosteric effects. The identified hot spots in the active sites for controlling enantio- and regioselectivity are shown to be transferable to other BVMOs and we describe concepts to influence heteroatom oxidation, improve protein stability and change the cofactor dependency of BVMOs. Summarizing all these different studies enabled the identification of BVMO- or property-dependent as well as universal hot spots.
Baeyer-Villiger 单加氧酶(BVMOs)是一种多功能的生物催化剂,可将酮转化为内酯或酯,同时还能有效地将硫醚氧化为亚砜。然而,BVMO 在合成中的应用存在一些局限性。在这篇综述中,我们概述了旨在优化不同 BVMO 特性的蛋白质工程研究。我们描述了某些 BVMO 活性位点中的热点,这些热点已被成功用于改变底物范围,以及通过别构效应影响这一特性的可能性。已确定的活性位点中的热点可用于控制对映选择性和区域选择性,并可转移到其他 BVMO 上,我们还描述了影响杂原子氧化、提高蛋白质稳定性和改变 BVMO 对辅助因子依赖性的概念。总结所有这些不同的研究,可以确定与 BVMO 或特性相关的热点以及通用热点。