首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Electrocatalytically driven ω-hydroxylation of fatty acids using cytochrome P450 4A1
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Electrocatalytically driven ω-hydroxylation of fatty acids using cytochrome P450 4A1

机译:使用细胞色素P450 4A1电催化驱动脂肪酸的ω-羟基化

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The cyclic enzymatic function of a cytochrome P450, as it catalyzes the oxygen-dependent metabolism of many organic chemicals, requires the delivery of two electrons to the hemeprotein. In general these electrons are transferred from NADPH to the P450 via an FMN- and FAD-containing flavoprotein (NADPH-P450 reductase). The present paper shows that NADPH can be replaced by an electrochemically generated reductant [cobalt(II) sepulchrate trichloride] for the electrocatalytically driven ω-hydroxylation of lauric acid. Results are presented illustrating the use of purified recombinant proteins containing P450 4A1, such as the fusion protein (rFP450[mRat4A1/mRatOR]L1) or a system reconstituted with purified P450 4A1 plus purified NADPH-P450 reductase. Rates of formation of 12-hydroxydodecanoic acid by the electrochemical method are comparable to those obtained using NADPH as electron donor. These results suggest the practicality of developing electrocatalytically dependent bioreactors containing different P450s as catalysts for the large-scale synthesis of stereo- and regio-selective hydroxylation products of many chemicals.
机译:细胞色素P450的循环酶功能催化许多有机化学物质的氧依赖性代谢,因此需要向血红蛋白传递两个电子。通常,这些电子通过含有FMN和FAD的黄素蛋白(NADPH-P450还原酶)从NADPH转移到P450。本文表明,NADPH可以被电化学生成的还原剂[三氯化钴(II)钴]取代,用于电催化驱动月桂酸的ω-羟基化。呈现的结果说明了使用含有P450 4A1的纯化重组蛋白,例如融合蛋白(rFP450 [mRat4A1 / mRatOR] L1)或用纯化的P450 4A1加纯化的NADPH-P450还原酶重建的系统的使用。通过电化学方法形成12-羟基十二烷酸的速率与使用NADPH作为电子给体的速率相当。这些结果表明开发含有不同P450作为电催化依赖性生物反应器作为大规模合成许多化学物质的立体和区域选择性羟基化产物的催化剂的实用性。

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