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首页> 外文期刊>Biochemistry >Enzymatic Processing of Fumiquinazoline F: A Tandem Oxidative-Acylation Strategy for the Generation of Multicyclic Scaffolds in Fungal Indole Alkaloid Biosynthesist
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Enzymatic Processing of Fumiquinazoline F: A Tandem Oxidative-Acylation Strategy for the Generation of Multicyclic Scaffolds in Fungal Indole Alkaloid Biosynthesist

机译:酶法处理的氟喹唑啉F:真菌吲哚生物碱合成中多环支架生成的串联氧化酰化策略。

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摘要

Aspergillus fumnigatus Аf293 is a known producer of quinazoline natural products, including the antitumor fumiquinazolines, of which the simplest member is fumiquinazoline F (FQF) with a 6-6-6 tricyclic core derived from anthranilic acid, tryptophan, and alanine. FQF is the proposed biological precursor to fumiquinazoline A (FQA) in which the pendant indole side chain has been modified via oxidative coupling of an additional molecule of alanine, yielding a fused 6-5-5 imidazoindolone. We recently identified fungal anthranilate-activating nonribosomal peptide synthetase (NRPS) domains through bioinformatics approaches. One domain previously identified is part of the trimodular NRPS Af12080, which we predict is responsible for FQF formation. We now show that two adjacent A. fumigatus ORFs, a monomodular NRPS Af12050 and a flavoprotein Af12060, are necessary and sufficient to convert FQF to FQA. Af12060 oxidizes the 2',3'-double bond of the indole side chain of FQF, and the three-domain NRPS Af 12050 activates L-Ala as the adenylate, installs it as the pantetheinyl thioester on its carrier protein domain, and acylates the oxidized indole for subsequent intramolecular cyclization to create the 6-5-5 imidazolindolone of FQA. This work provides experimental validation of the fumiquinazoline biosynthetic cluster of A. fumigants Аf293 and describes an oxidative annulation biosynthetic strategy likely shared among several classes of polycyclic fungal alkaloids.
机译:烟曲霉Аf293是已知的喹唑啉天然产物的生产商,包括抗肿瘤的氟喹唑啉,其中最简单的成员是具有6-6-6三环核的氟喹唑啉F(FQF),其核心是邻氨基苯甲酸,色氨酸和丙氨酸。 FQF是拟定的氟喹唑啉A(FQA)的生物前体,其中吲哚侧链侧基已通过另外一个丙氨酸分子的氧化偶联进行修饰,生成了融合的6-5-5咪唑并吲哚酮。我们最近通过生物信息学方法鉴定了真菌邻氨基苯甲酸激活非核糖体肽合成酶(NRPS)域。先前确定的一个域是三模NRPS Af12080的一部分,我们预测其负责FQF的形成。我们现在显示,两个相邻的烟曲霉ORF,单模块NRPS Af12050和黄素蛋白Af12060,对于将FQF转换为FQA是必要和充分的。 Af12060氧化FQF吲哚侧链的2',3'-双键,三结构域NRPS Af 12050激活L-Ala(腺苷酸),将其安装为泛素硫酯,并在其载体蛋白结构域上酰化氧化的吲哚用于随后的分子内环化,生成FQA的6-5-5咪唑啉酮。这项工作提供了对熏蒸农杆菌f293的泛喹唑啉生物合成簇的实验验证,并描述了可能在几类多环真菌生物碱之间共享的氧化环化生物合成策略。

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