Zhang Yisang, Zhang Guobin, Wang Taichang, Chen Yu, Wang Junqing, Li Piwu, Wang Ruiming, Su Jing
State Key Laboratory of Biobased Material and Green Papermaking (LBMP), Qilu University of Technology, Jinan, Shandong, China.
Key Laboratory of Shandong Microbial Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan, Shandong, China.
Chembiochem. 2024 Nov 18;25(22):e202400297. doi: 10.1002/cbic.202400297. Epub 2024 Sep 17.
Cytochrome P450 (CYP450) enzymes, which are widely distributed and pivotal in various biochemical reactions, catalyze diverse processes such as hydroxylation, epoxidation, dehydrogenation, dealkylation, nitrification, and bond formation. These enzymes have been applied in drug metabolism, antibiotic production, bioremediation, and fine chemical synthesis. Recent research revealed that CYP450 catalytic kinetics deviated from the classic Michaelis-Menten model. A notable substrate inhibition phenomenon that affects the catalytic efficiency of CYP450 at high substrate concentrations was identified. However, the substrate inhibition of various reactions catalyzed by CYP450 enzymes have not been comprehensively reviewed. This review describes CYP450 substrate inhibition examples and atypical Michaelis-Menten kinetic models, and provides insight into mechanisms of these enzymes. We also reviewed 3D structure and dynamics of CYP450 with substrate binding. Outline methods for alleviating substrate inhibition in CYP450 and other enzymes, including traditional fermentation approaches and protein engineering modifications. The comprehensive analysis presented in this study lays the foundation for enhancing the catalytic efficiency of CYP450 by deregulating substrate inhibition.
细胞色素P450(CYP450)酶广泛分布于各种生化反应中,起关键作用,催化多种反应过程,如羟基化、环氧化、脱氢、脱烷基、硝化和键形成等。这些酶已应用于药物代谢、抗生素生产、生物修复和精细化学合成。最近的研究表明,CYP450催化动力学偏离了经典的米氏模型。已发现一种显著的底物抑制现象,即在高底物浓度下会影响CYP450的催化效率。然而,尚未对CYP450酶催化的各种反应的底物抑制进行全面综述。本综述描述了CYP450底物抑制实例和非典型米氏动力学模型,并深入探讨了这些酶的作用机制。我们还综述了CYP450与底物结合的三维结构和动力学。概述了减轻CYP450及其他酶底物抑制的方法,包括传统发酵方法和蛋白质工程修饰。本研究中的综合分析为通过解除底物抑制来提高CYP450的催化效率奠定了基础。