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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Double-Electron Reduced Diphenylviologen as a Coenzyme for Biocatalytic Building Carbon-Carbon Bonds from CO2 as a Carbon Feedstock
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Double-Electron Reduced Diphenylviologen as a Coenzyme for Biocatalytic Building Carbon-Carbon Bonds from CO2 as a Carbon Feedstock

机译:双电子还原二苯基硫代,作为生物催化建筑物 - 碳 - 碳键的辅酶碳 - 碳键,Co2作为碳原料

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摘要

Malate dehydrogenase (oxaloacetate-decarboxylating) commonly named malic enzyme (ME) from chicken liver (EC 1.1.1.40) catalyzes a reaction introducing CO2 as a carboxy-group to pyruvate to form malate via oxaloacetate in the presence of the coenzyme NADPH, and is an attractive biocatalyst for building C-C bonds using CO2 as a chemical carbon feedstock. We previously discovered that multielectron reduced diphenylviologen derivatives (PVs) can act as an artificial coenzyme for ME, replacing the expensive NADPH (natural coenzyme), in the formation of malate. In this Letter, the kinetic parameters of oxaloacetate production based on building C-C bonds of a coupling pyruvate and CO2 with water-soluble PVs, double electron reduced 1,1'-bis(p-carboxyphenyl)-4,4'-bipyridinium dichloride (PCV degrees) and ME were determined with the analysis of enzymatic kinetics for the first time. PCV degrees acts as a Lewis base and is involved in oxaloacetate production via C-H bond activation and carboxylation of pyruvate by CO2.
机译:来自鸡肝(EC 1.1.1.40)的苹果酸脱氢酶(草酰乙酸叔丁基化)常见的苹果酶(Ec 1.1.1.40)催化将CO 2作为羧基的反应引入丙酮酸,以在辅酶NADPH存在下通过草酸酯形成苹果酸盐,并且是一种用于使用CO2作为化学碳原料构建CC键的有吸引力的生物催化剂。我们以前发现型多苯基硫代喹啉衍生物(PVS)可作为对我的人工辅酶作用,取代昂贵的NADPH(天然辅酶),形成苹果酸酯。在这封信中,基于建立丙酮酸和CO 2的CC键与水溶性PVS的CC键,双电子还原的1,1'-BIS(甲基苯基)-4,4'-双吡啶二氯化碳( PCV度)和ME是根据酶动力学的第一次分析确定。 PCV度作为路易斯碱,通过C-H键活化和CO 2的丙酮酸羧化酶化涉及脱氧酸盐。

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