首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Bioelectrocatalysts:Engineered Oxidoreductase System for Utilization for Fumarate Reductase in Chemical Synthesis,Detection and Fuel Cells
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Bioelectrocatalysts:Engineered Oxidoreductase System for Utilization for Fumarate Reductase in Chemical Synthesis,Detection and Fuel Cells

机译:生物电催化剂:工程化的氧化还原酶系统,用于富马酸酯还原酶在化学合成,检测和燃料电池中的应用

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Fumarate reducatase was used as a model oxidoreductase to demonstrate continuous electrical cofactor reduction-oxidation during the bioelectrochemical synthesis and detection of chemicals.The enzyme preparation was immobilized onto a graphite felt electrode that was modified with carboxymethylcellulose (CMC).Nicotinamide adenine dinucleotide (NAD),neutral red,and fumarate reductase (which contained menaquinone) were convalently linked by peptide bonds to the CMC.The electron mediator neutral red allowed NAD and menaquinone to be recycled electrically during enzymatic chemical synthesis.Succinate detection by the bioelectrocatalyst was linear from 5 muM to 10 mM succinate.Fumarate synthesis using this bioelectrode was dependent on succinate utilization and resulted in proportional production of electricity and fumarate.Succinate synthesis using this bioelectrocatalyst was dependent on current and fumarate concentration.This bioelectrocatalyst system may enhance the utility of menaquinone- and/or pyridine nucleotide-linked oxidoreductases in diverse enzymatic fuel cells and sensors.It may also enhance the utility of oxidoreductase-based chemical synthesis systems because it eliminates the problem of cofactor recycling.
机译:富马酸酯还原酶被用作模型氧化还原酶,以证明在生物电化学合成和化学检测过程中连续的电辅因子还原-氧化作用;酶制剂被固定在用羧甲基纤维素(CMC)修饰的石墨毡电极上。烟酰胺腺嘌呤二核苷酸(NAD) ,中性红和富马酸酯还原酶(含有甲萘醌)通过肽键与CMC结合。电子介体中性红使NAD和甲萘醌在酶促化学合成过程中可以循环利用。从5μM的生物电催化剂检测琥珀酸呈线性到10 mM的琥珀酸。使用该生物电极合成富马酸酯取决于琥珀酸的利用并导致电和富马酸酯的成比例产生。使用该生物电催化剂合成琥珀酸依赖于电流和富马酸酯的浓度。该生物电催化剂系统可以增强甲萘醌的效用电子和/或吡啶核苷酸连接的氧化还原酶在各种酶燃料电池和传感器中的应用,因为它消除了辅因子循环利用的问题,因此还可以增强基于氧化还原酶的化学合成系统的实用性。

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