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发现一种真菌多铜氧化酶,可催化三环萘并吡喃酮的区域选择性偶联,生成非对映异构体。

Discovery of a Fungal Multicopper Oxidase That Catalyzes the Regioselective Coupling of a Tricyclic Naphthopyranone To Produce Atropisomers.

机构信息

Graduate School of Pharmaceutical Sciences, Kitasato University, 5-9-1 Shirokane, Minato-ku, Tokyo, 108-8641, Japan.

Laboratory of Natural Products Chemistry, School of Pharmacy, Iwate Medical University, 2-1-1 Nishitokuta, Yahaba, Iwate, 028-3694, Japan.

出版信息

Angew Chem Int Ed Engl. 2018 Apr 23;57(18):5115-5119. doi: 10.1002/anie.201800415. Epub 2018 Mar 22.

Abstract

Atropisomeric dinapinones A1 and A2 (DPA1 and DPA2) were isolated from a culture of Talaromyces pinophilus FKI-3864. Monapinone coupling enzyme (MCE), which dimerizes naphthopyranone monapinone A (MPA), was purified from a cell-free extract of T. pinophilus FKI-3864. MCE regioselectively dimerizes MPA at the 8,8'-positions to synthesize the atropisomers DPA1 and DPA2 in a ratio of approximately 1:2.5 without a cofactor. The optimal pH value and temperature for MCE were 4.0 and 50 °C, and the apparent K and V values for MPA were (72.7±23.2) μm and (1.21±0.170) μmol min  mg  protein. The MCE polypeptide is significantly homologous with multicopper oxidases. Heterologous expression of MCE and functional analysis confirmed that MCE catalyzes the regioselective coupling reaction of MPA to produce DPA. No fungal multicopper oxidase has previously been reported to catalyze regioselective intermolecular oxidative phenol coupling to produce naphthopyranone atropisomers.

摘要

来自土曲霉 FKI-3864 培养物的对映体二萘醌 A1 和 A2(DPA1 和 DPA2)被分离出来。来自土曲霉 FKI-3864 的无细胞提取物中纯化了单体萘并吡喃酮单萘醌 A(MPA)二聚酶(MCE),该酶可将萘并吡喃酮单体萘醌 A(MPA)在 8,8′-位区域选择性二聚化,以大约 1:2.5 的比例合成对映体 DPA1 和 DPA2,无需辅因子。MCE 的最佳 pH 值和温度分别为 4.0 和 50°C,MPA 的表观 K 和 V 值分别为(72.7±23.2)μm 和(1.21±0.170)μmol min mg protein。MCE 多肽与多铜氧化酶具有显著的同源性。MCE 的异源表达和功能分析证实,MCE 催化 MPA 的区域选择性偶联反应,生成 DPA。以前没有报道过真菌多铜氧化酶能够催化区域选择性的酚类间氧化偶联反应,以产生萘并吡喃酮对映体。

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