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Mechanistic Insights into Taxadiene Epoxidation by Taxadiene-5 alpha-Hydroxylase

机译:紫杉二烯-5α-羟化酶对紫杉二烯环氧化的机理研究

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The anticancer molecule taxol (Paclitaxel) stands as one of the most medically and economically important natural products. However, despite decades of extensive study, its biosynthesis remains poorly understood. Unpredictable behavior of the first oxygenation enzyme, taxadiene-5a-hydroxylase, which produces a range of undesired products, currently stands as a key bottleneck to improved taxol production. We herein present chemical and biological evidence of an unreported epoxidase activity of taxadiene-5a-hydroxylase that puts into question the previously proposed radical-rebound mechanism. We demonstrate that the poor selectivity of taxadiene-5a-hydroxylase arises from nonselective degradation of an epoxide intermediate produced via a selective oxidation step, rather than from promiscuous oxidation, as previously proposed. We support these conclusions by demonstrating variable enzyme behavior in differing hosts and conditions, similarity of products and product ratios generated from chemical epoxidation, and taxadiene-5a-hydroxylase, and differing enzymatic activity on alternative taxadiene isomers. Additionally, we use directed mutagenesis to describe the oxidizing species of the P450, demonstrate that further in vivo functionalization of oxidized taxadiene is unable to improve selectivity of the oxidation, and show that multiple products are produced in the Taxus cuspidata and are not simply an artifact of heterologous expression. Our results highlight an important, and previously unknown, obstacle to improved taxol production. We further offer insights to overcome the challenges posed by an epoxide-mediated reaction, which sets the basis for further engineering of taxol biosynthesis.
机译:抗癌分子紫杉醇(紫杉醇)是医学上和经济上最重要的天然产物之一。然而,尽管数十年的广泛研究,其生物合成仍然知之甚少。第一种氧化酶紫杉二烯-5a-羟化酶的行为无法预测,该酶产生一系列不良产物,目前是提高紫杉醇产量的关键瓶颈。我们在此提供了紫杉二烯-5a-羟化酶未报告的环氧酶活性的化学和生物学证据,这使先前提出的自由基反弹机制受到质疑。我们证明紫杉二烯-5a-羟化酶的选择性差是由通过选择性氧化步骤产生的环氧化物中间体的非选择性降解而不是由先前提出的混杂氧化引起的。我们通过证明在不同宿主和条件下的可变酶行为,由化学环氧化和紫杉二烯-5a-羟化酶产生的产物相似性和产物比率以及对替代紫杉二烯异构体的不同酶促活性,来支持这些结论。此外,我们使用定向诱变来描述P450的氧化物种,证明氧化的紫杉二烯的进一步体内功能化无法提高氧化的选择性,并表明在红豆杉中产生多种产物,而不仅仅是人工产物异源表达。我们的结果突显了紫杉醇产量提高的重要且以前未知的障碍。我们进一步提供了见解,以克服由环氧化物介导的反应所带来的挑战,这为紫杉醇生物合成的进一步工程化奠定了基础。

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