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Application of nanodisc technology for direct electrochemical investigation of plant cytochrome P450s and their NADPH P450 oxidoreductase

机译:纳米技术在植物细胞色素P450及其NADPH P450氧化还原酶直接电化学研究中的应用

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Direct electrochemistry of cytochrome P450 containing systems has primarily focused on investigating enzymes from microbes and animals for bio-sensing applications. Plant P450s receive electrons from NADPH P450 oxidoreductase (POR) to orchestrate the bio-synthesis of a plethora of commercially valuable compounds. In this report, full length CYP79A1, CYP71E1 and POR of the dhurrin pathway in Sorghum bicolor were reconstituted individually in nanoscale lipid patches, "nanodiscs", and directly immobilized on unmodified gold electrodes. Cyclic voltammograms of CYP79A1 and CYP71E1 revealed reversible redox peaks with average midpoint potentials of 80?±?5?mV and 72?±?5?mV vs. Ag/AgCl, respectively. POR yielded two pairs of redox peaks with midpoint potentials of 90?±?5?mV and -300?±?10?mV, respectively. The average heterogeneous electron transfer rate constant was calculated to be ~1.5 s(-1). POR was electro-catalytically active while the P450s generated hydrogen peroxide (H2O2). These nanodisc-based investigations lay the prospects and guidelines for construction of a simplified platform to perform mediator-free, direct electrochemistry of non-engineered cytochromes P450 under native-like conditions. It is also a prelude for driving plant P450 systems electronically for simplified and cost-effective screening of potential substrates/inhibitors and fabrication of nano-bioreactors for synthesis of high value natural products.
机译:含有细胞色素P450的系统的直接电化学主要致力于研究微生物和动物中用于生物传感应用的酶。植物P450从NADPH P450氧化还原酶(POR)接收电子,以协调大量具有商业价值的化合物的生物合成。在这份报告中,全长CYP79A1,CYP71E1和高粱双色中的杜林蛋白途径的POR分别在纳米脂质膜片“ nanodiscs”中重构,并直接固定在未修饰的金电极上。 CYP79A1和CYP71E1的循环伏安图显示相对于Ag / AgCl的可逆氧化还原峰,平均中点电位分别为80?±?5?mV和72?±?5?mV。 POR产生两对氧化还原峰,中点电势分别为90?±?5?mV和-300?±?10?mV。平均异质电子传输速率常数经计算为〜1.5 s(-1)。 POR具有电催化活性,而P450则产生过氧化氢(H2O2)。这些基于纳米光盘的研究为构建简化平台以在天然条件下进行非工程化细胞色素P450的无介体,直接电化学的简化奠定了基础。这也是以电子方式驱动工厂P450系统以简化和成本有效地筛选潜在底物/抑制剂以及制造用于合成高价值天然产物的纳米生物反应器的序幕。

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