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黄孢原毛平革菌中黄素蛋白醇氧化酶对仲醇的对映选择性氧化。

Enantioselective oxidation of secondary alcohols by the flavoprotein alcohol oxidase from Phanerochaete chrysosporium.

机构信息

Molecular Enzymology Group, University of Groningen, Nijenborgh 4, Groningen, the Netherlands.

Molecular Enzymology Group, University of Groningen, Nijenborgh 4, Groningen, the Netherlands.

出版信息

Arch Biochem Biophys. 2021 Jun 15;704:108888. doi: 10.1016/j.abb.2021.108888. Epub 2021 Apr 25.

Abstract

The enantioselective oxidation of secondary alcohols represents a valuable approach for the synthesis of optically pure compounds. Flavoprotein oxidases can catalyse such selective transformations by merely using oxygen as electron acceptor. While many flavoprotein oxidases preferably act on primary alcohols, the FAD-containing alcohol oxidase from Phanerochaete chrysosporium was found to be able to perform kinetic resolutions of several secondary alcohols. By selective oxidation of the (S)-alcohols, the (R)-alcohols were obtained in high enantiopurity. In silico docking studies were carried out in order to substantiate the observed (S)-selectivity. Several hydrophobic and aromatic residues in the substrate binding site create a cavity in which the substrates can comfortably undergo van der Waals and pi-stacking interactions. Consequently, oxidation of the secondary alcohols is restricted to one of the two enantiomers. This study has uncovered the ability of an FAD-containing alcohol oxidase, that is known for oxidizing small primary alcohols, to perform enantioselective oxidations of various secondary alcohols.

摘要

手性醇的对映选择性氧化是合成光学纯化合物的一种有价值的方法。黄素蛋白氧化酶仅使用氧气作为电子受体即可催化这种选择性转化。虽然许多黄素蛋白氧化酶更倾向于作用于伯醇,但发现来自黄孢原毛平革菌的含 FAD 的醇氧化酶能够对几种仲醇进行动力学拆分。通过对 (S)-醇的选择性氧化,可以获得高对映纯度的 (R)-醇。为了证实观察到的 (S)-选择性,进行了计算机对接研究。在底物结合位点中,有几个疏水性和芳香性残基形成一个空腔,其中底物可以舒适地进行范德华和 π-堆积相互作用。因此,仲醇的氧化仅限于两种对映异构体之一。这项研究揭示了一种含 FAD 的醇氧化酶的能力,该酶已知能够氧化小的伯醇,能够对各种仲醇进行对映选择性氧化。

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