首页> 外文期刊>Journal of chemical theory and computation: JCTC >Unraveling Binding Effects of Cobalt(II) Sepulchrate with the Monooxygenase P450 BM-3 Heme Domain Using Molecular Dynamics Simulations
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Unraveling Binding Effects of Cobalt(II) Sepulchrate with the Monooxygenase P450 BM-3 Heme Domain Using Molecular Dynamics Simulations

机译:分子动力学模拟揭示钴(II)与单加氧酶P450 BM-3血红素结构域的结合作用

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摘要

One of the major limitations to exploit enzymes in industrial processes is their dependence on expensive reduction equivalents like NADPH to drive their catalytic cycle. Soluble electron-transfer (ET) mediators like cobalt(II) sepulchrate have been proposed as a cost-effective alternative to shuttle electrons between an inexpensive electron source and an enzyme's redox center. The interactions of these molecules with enzymes have not yet been elucidated at the molecular level. Herein, molecular dynamics simulations are performed to understand the binding and ET mechanism of the cobalt(II) sepulchrate with the heme domain of cytochrome P450 BM-3. The study provides a detailed map of ET mediator binding sites on the protein surface that are prevalently composed of Asp and Glu amino acids. The cobalt(II) sepulchrate does not show a preferential binding to these sites. However, among the observed binding sites, only few of them provide efficient ET pathways to heme iron. The results of this study can be used to improve the ET mediator efficiency of the enzyme for possible biotechnological applications.
机译:在工业过程中利用酶的主要限制之一是它们对昂贵的还原等同物(如NADPH)的依赖,以驱动其催化循环。有人提出像钴(II)钴这样的可溶性电子转移(ET)介质是一种经济高效的替代方法,可以在廉价的电子源和酶的氧化还原中心之间穿梭电子。这些分子与酶的相互作用尚未在分子水平上阐明。本文中,进行分子动力学模拟以了解钴(II)与细胞色素P450 BM-3血红素结构域的结合和ET机制。该研究提供了蛋白质表面上ET介质结合位点的详细图谱,这些位点主要由Asp和Glu氨基酸组成。硫化钴(II)没有显示出对这些位点的优先结合。然而,在观察到的结合位点中,只有很少的结合位点提供了通往血红素铁的有效ET途径。这项研究的结果可用于提高酶的ET介体效率,以用于可能的生物技术应用。

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