Li Shengying, Podust Larissa M, Sherman David H
Life Sciences Institute, Department of Medicinal Chemistry, University of Michigan, Ann Arbor, Michigan 48109, USA.
J Am Chem Soc. 2007 Oct 31;129(43):12940-1. doi: 10.1021/ja075842d. Epub 2007 Oct 4.
[Image: see text] Cytochrome P450 enzymes mediate important oxidative processes in biological systems including regio- and stereo-specific hydroxylation and epoxidation reactions. The inherent requirement of these biomolecules for separate redox partner(s) significantly limits their application in biotechnology. To address this challenge, naturally occurring and/or bio-engineered self-sufficient P450 systems with covalently fused redox partners have been utilized to harness their catalytic power. In this study, we describe the first characterization of a bacterial biosynthetic cytochrome P450 PikC fused to a heterologous reductase domain RhFRED that demonstrates single-component self-sufficiency. This novel fusion system not only produces a more active and effective biocatalyst, but also suggests a general design for a universal reductase to generate diverse self-sufficient fusions for functional identification or industrial applications of biosynthetic P450s.
[图:见正文] 细胞色素P450酶介导生物系统中的重要氧化过程,包括区域特异性和立体特异性羟基化及环氧化反应。这些生物分子对单独的氧化还原伴侣的内在需求显著限制了它们在生物技术中的应用。为应对这一挑战,具有共价融合氧化还原伴侣的天然存在和/或生物工程自足P450系统已被用于发挥其催化能力。在本研究中,我们描述了首个与异源还原酶结构域RhFRED融合的细菌生物合成细胞色素P450 PikC的表征,该表征证明了单组分自足性。这种新型融合系统不仅产生了一种更具活性和有效性的生物催化剂,还为通用还原酶提出了一种通用设计,以生成用于生物合成P450功能鉴定或工业应用的多种自足融合体。