From Tradition to Innovation: The Transition of P450 Enzyme Catalysis via Light-Driven Electron Transfer
作者:Ziyang Yin, Jiaying Ai, Jikai Gao, Xiaoyan Lin, Fuping Lu, Hui‐Min Qin, Shuhong Mao · 发表于:ACS Catalysis · 年份:2025 · DOI:10.1021/acscatal.5c02655 · 被引用次数:5 · 研究领域:Radical Photochemical Reactions、Innovative Microfluidic and Catalytic Techniques Innovation、Electrochemical sensors and biosensors
Cytochrome P450s are heme-thiolate enzymes that play a pivotal role in pharmaceutical and biosynthetic applications due to their proficiency in the oxyfunctionalization of unactivated carbon atoms. Although extensive engineering efforts were dedicated to their application for novel non-natural substrates and reactions, their industrial potential is currently limited due to NAD(P)H dependence and complex redox partner requirements. Light-driven catalysis has emerged as a promising alternative, alleviating the need for cumbersome cofactor recycling, thereby facilitating economical and environmentally friendly biosynthesis. This review systematically explores the transition from conventional NADPH-driven P450 systems to innovative light-driven approaches. We analyze the photocatalytic principles underpinning this shift, discussing the catalytic mechanism of P450 enzymes and strategies for regenerating cofactors using light. A major focus is placed on direct electron transfer mechanisms between photosensitizers and P450 enzymes followed by a critical discussion of their current limitations, with particular emphasis on the pivotal challenge of enhancing the coupling efficiency of photocatalytic electron. Therefore, this review aims to further explore intricate catalytic mechanisms powered by light, including the strategic design of electron transfer pathways in two types of semiartificial systems, as well as advanced characterization techniques for probing the interactions between...