Koomson Desmond Ato, Nicholson Jake H, Brogan Alex P S, Aldous Leigh
Department of Chemistry, King's College London Britannia House London SE1 1DB UK
Chem Sci. 2024 May 16;15(24):9325-9332. doi: 10.1039/d4sc02431a. eCollection 2024 Jun 19.
Viologens, 1,1'-disubstituted-4,4'-bipyridinium salts, are organic redox species that can be used in place of NADPH as mediators for redox enzymes. In this study, using the reduction of oxidized glutathione by glutathione reductase as a model system, a rationally designed library of viologens covering a range of polarities and functional groups were explored as electron transfer mediators for bio-electrocatalysis. Through a series of electrochemical investigations, the reduction potential was found to be the primary determining factor for electron transfer between the viologen and enzyme. Through enhancing the solubility of viologen such that the fully reduced state remained soluble, we demonstrate a much-widened window of useable viologen potentials. In doing so, we describe for the first time a highly efficient electron transfer to a flavoenzyme promoting the catalytic reaction in the absence of co-factors. As such, our study provides a platform for broadening the scope for using viologens as mediating agents for electrochemically-driven enzymatic processes.
紫精,即1,1'-二取代-4,4'-联吡啶鎓盐,是一类有机氧化还原物种,可作为烟酰胺腺嘌呤二核苷酸磷酸(NADPH)的替代物,用作氧化还原酶的介质。在本研究中,以谷胱甘肽还原酶催化氧化型谷胱甘肽的还原反应作为模型体系,对一系列涵盖不同极性和官能团的、经过合理设计的紫精文库进行了探索,以考察其作为生物电催化电子转移介质的性能。通过一系列电化学研究发现,还原电位是决定紫精与酶之间电子转移的主要因素。通过提高紫精的溶解度,使完全还原态保持可溶,我们展示了一个更宽的可用紫精电位窗口。在此过程中,我们首次描述了在无辅因子的情况下,向黄素酶的高效电子转移促进了催化反应。因此,我们的研究为拓宽紫精作为电化学驱动酶促过程介导剂的应用范围提供了一个平台。