Institute of Applied Synthetic Chemistry, TU Wien, Getreidemarkt 9, 1060, Vienna, Austria.
Agrana Research & Innovation Center GmbH, Josef-Reither-Straße 21-23, 3430, Tulln, Austria.
Chembiochem. 2022 Dec 5;23(23):e202200411. doi: 10.1002/cbic.202200411. Epub 2022 Oct 18.
Laccases are oxidases that only require O as a terminal oxidant. Thus, they provide an attractive green alternative to established alcohol oxidation protocols. However, laccases typically require catalytic amounts of mediator molecules to serve as electron shuttles between the enzyme and desired substrate. Consequently, laccase-mediator systems are defined by a multitude of parameters such as, e. g., the choice of laccase and mediator, the respective concentrations, pH, and the oxygen source. This complexity and a perceived lack of comparable data throughout literature represent an entry burden into this field. To provide a solid starting point, particularly for organic chemists, we herein provide a time-resolved, quantitative laccase and mediator screening based on the oxidation of anis alcohol as model reaction. We measured the redox potentials of mediators under the reaction conditions to relate them to their performance. Lastly, for particularly efficient laccase-mediator pairs, we screened important reaction parameters, resulting in an optimized setup for mediator-assisted laccase catalyzed oxidations.
漆酶是仅需 O2 作为末端氧化剂的氧化酶。因此,它们为现有的醇氧化方案提供了一种有吸引力的绿色替代方案。然而,漆酶通常需要催化量的介体分子作为酶和所需底物之间的电子穿梭体。因此,漆酶-介体系统由多种参数定义,例如,漆酶和介体的选择、各自的浓度、pH 值和氧源。这种复杂性以及文献中普遍缺乏可比数据被认为是进入该领域的一个障碍。为了提供一个坚实的起点,特别是对于有机化学家,我们在此提供了一种基于茴香醇氧化的时间分辨、定量漆酶和介体筛选,作为模型反应。我们测量了反应条件下介体的氧化还原电位,将其与性能相关联。最后,对于特别有效的漆酶-介体对,我们筛选了重要的反应参数,为介体辅助漆酶催化氧化建立了优化的设置。