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Enzymes as modular catalysts for redox half-reactions in H2-powered chemical synthesis: from biology to technology

机译:酶作为氢催化化学合成中氧化还原半反应的模块化催化剂:从生物学到技术

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摘要

The present study considers the ways in which redox enzyme modules are coupled in living cells for linking reductive and oxidative half-reactions, and then reviews examples in which this concept can be exploited technologically in applications of coupled enzyme pairs. We discuss many examples in which enzymes are interfaced with electronically conductive particles to build up heterogeneous catalytic systems in an approach which could be termed synthetic biochemistry. We focus on reactions involving the H+/H2 redox couple catalysed by NiFe hydrogenase moieties in conjunction with other biocatalysed reactions to assemble systems directed towards synthesis of specialised chemicals, chemical building blocks or bio-derived fuel molecules. We review our work in which this approach is applied in designing enzyme-modified particles for H2-driven recycling of the nicotinamide cofactor NADH to provide a clean cofactor source for applications of NADH-dependent enzymes in chemical synthesis, presenting a combination of published and new work on these systems. We also consider related photobiocatalytic approaches for light-driven production of chemicals or H2 as a fuel. We emphasise the techniques available for understanding detailed catalytic properties of the enzymes responsible for individual redox half-reactions, and the importance of a fundamental understanding of the enzyme characteristics in enabling effective applications of redox biocatalysis.
机译:本研究考虑了在活细胞中偶联氧化还原酶模块以连接还原和氧化半反应的方式,然后回顾了可在偶联酶对的应用中以技术方式利用这一概念的实例。我们讨论了许多例子,其中酶与电子导电颗粒相接,以一种可以称为合成生物化学的方法建立非均相催化系统。我们专注于涉及由NiFe氢化酶部分催化的H + / H2氧化还原对的反应,以及其他生物催化反应,以组装用于合成专门化学品,化学构件或生物来源的燃料分子的系统。我们回顾了我们的工作,在该方法中,该方法用于设计用于H2驱动的烟酰胺辅因子NADH循环利用的酶改性颗粒,从而为NADH依赖型酶在化学合成中的应用提供了清洁的辅因子来源,并结合了已发表的和新的在这些系统上工作。我们还考虑了光化学生产或以H2为燃料的相关光生物催化方法。我们强调了可用于理解负责单个氧化还原半反应的酶的详细催化特性的技术,以及在有效应用氧化还原生物催化中基本了解酶特性的重要性。

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