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Electrochemical Detection of Human Cytochrome P450 2A6 Inhibition: A Step toward Reducing Dependence on Smoking

机译:电化学检测人细胞色素P450 2A6抑制作用:迈向减少吸烟依赖性的一步

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Inhibition of human cytochrome P450 2A6 has been demonstrated to play an important role in nicotine metabolism and consequent smoking habits. Here, the "molecular Lego" approach was used to achieve the first reported electrochemical signal of human CYP2A6 and to improve its catalytic efficiency on electrode surfaces. The enzyme was fused at the genetic level to flavodoxin from Desulfovibrio vulgaris (FLD) to create the chimeric CYP2A6-FLD. Electrochemical characterization by cyclic voltammetry shows clearly defined redox transitions of the haem domain in both CYP2A6 and CYP2A6-FLD. Electrocatalysis experiments using coumarin as substrate followed by fluorimetric quantification of the product were performed with immobilized CYP2A6 and CYP2A6-FLD. Comparison of the kinetic parameters showed that coumarin catalysis was carried out with a higher efficiency by the immobilized CYP2A6-FLD, with a calculated k_(cat) value significantly higher (P < 0.005) than that of CYP2A6, whereas the affinity for the substrate (K_M) remained unaltered. The chimeric system was also successfully used to demonstrate the inhibition of the electrochemical activity of the immobilized CYP2A6-FLD, toward both coumarin and nicotine substrates, by tranylcypromine, a potent and selective CYP2A6 inhibitor. This work shows that CYP2A6 turnover efficiency is improved when the protein is linked to the FLD redox module, and this strategy can be utilized for the development of new clinically relevant biotechnological approaches suitable for deciphering the metabolic implications of CYP2A6 polymorphism and for the screening of CYP2A6 substrates and inhibitors.
机译:已证明抑制人细胞色素P450 2A6在尼古丁代谢和随后的吸烟习惯中起重要作用。在这里,使用“分子乐高”方法来实现人类CYP2A6的第一个报告的电化学信号,并提高其在电极表面的催化效率。将该酶在遗传水平上融合到寻常型脱硫弧菌(FLD)的黄酮毒素上,以产生嵌合CYP2A6-FLD。通过循环伏安法进行的电化学表征显示,在CYP2A6和CYP2A6-FLD中,血红素域的氧化还原跃迁定义明确。使用香豆素作为底物进行电催化实验,然后用固定化的CYP2A6和CYP2A6-FLD进行荧光定量。动力学参数的比较表明,固定化CYP2A6-FLD可以更高效地进行香豆素催化,计算出的k_(cat)值比CYP2A6显着更高(P <0.005),而对底物的亲和力( K_M)保持不变。嵌合系统也已成功用于证明强效选择性CYP2A6抑制剂tranylcypromine抑制固定化CYP2A6-FLD对香豆素和尼古丁底物的电化学活性。这项工作表明,当蛋白质与FLD氧化还原模块连接时,CYP2A6的转换效率得到提高,并且该策略可用于开发新的临床相关生物技术方法,该方法适合于解密CYP2A6多态性的代谢影响以及CYP2A6的筛选底物和抑制剂。

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