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漆酶在手性酚偶联反应中的作用及其在真菌二聚体萘并吡喃酮生物合成中的应用。

Enantioselective Phenol Coupling by Laccases in the Biosynthesis of Fungal Dimeric Naphthopyrones.

机构信息

Institut für Pharmazeutische Wissenschaften, Albert-Ludwigs-Universität Freiburg, Albertstrasse 25, 79104, Freiburg, Germany.

出版信息

Angew Chem Int Ed Engl. 2019 Jul 1;58(27):9125-9128. doi: 10.1002/anie.201903759. Epub 2019 May 22.

Abstract

Biaryl compounds are ubiquitous metabolites that are often formed by dimerization through oxidative phenol coupling. Hindered rotation around the biaryl bond can cause axial chirality. In nature, dimerizations are catalyzed by oxidative enzymes such as laccases. This class of enzymes is known for non-specific oxidase reactions while inherent enantioselectivity is hitherto unknown. Here, we describe four related fungal laccases that catalyze γ-naphthopyrone dimerization in a regio- and atropselective manner. In vitro assays revealed that three enzymes were highly P-selective (ee >95 %), while one enzyme showed remarkable flexibility. Its selectivity for M- or P-configured dimers varied depending on the reaction conditions. For example, a lower enzyme concentration yielded primarily (P)-ustilaginoidin A, whereas the M atropisomer was favored at higher concentration. These results demonstrate inherent enantioselectivity in an enzyme class that was previously thought to comprise only non-selective oxidases.

摘要

联苯化合物是普遍存在的代谢物,通常通过氧化酚偶联二聚化形成。联苯键的阻碍旋转会导致轴向手性。在自然界中,二聚化是由氧化酶如漆酶催化的。这类酶以非特异性氧化酶反应而闻名,而内在的对映选择性迄今未知。在这里,我们描述了四种相关的真菌漆酶,它们以区域和对映选择性的方式催化γ-萘并吡喃酮二聚化。体外实验表明,三种酶具有很高的 P 选择性(ee>95%),而一种酶表现出显著的灵活性。其对 M 或 P 构型二聚体的选择性取决于反应条件。例如,较低的酶浓度主要产生(P)-ustilaginoidin A,而在较高浓度下则有利于 M 对映异构体。这些结果表明,在以前被认为只包含非选择性氧化酶的酶类中存在内在的对映选择性。

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