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首页> 外文期刊>Nature chemical biology >Terrequinone A biosynthesis through L-tryptophan oxidation, dimerization and bisprenylation
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Terrequinone A biosynthesis through L-tryptophan oxidation, dimerization and bisprenylation

机译:通过L-色氨酸的氧化,二聚化和双戊二酰化来合成对苯二酚A

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The antitumor fungal metabolite terrequinone A, identified in extracts of Aspergillus sp., is biosynthesized by the five-gene cluster tdiA- tdiE. In this work, we have overproduced all five proteins (TdiA-TdiE) in the bacterial host Escherichia coli, fully reconstituting the biosynthesis of terrequinone A. This pathway involves aminotransferase activity, head-to-tail dimerization and bisprenylation of the scaffold to yield the benzoquinone natural product. We have established that TdiD is a pyridoxal-5'-phosphate-dependent L-tryptophan aminotransferase that generates indolepyruvate for an unusual nonoxidative coupling by the tridomain nonribosomal peptide synthetase TdiA. TdiC, an NADH-dependent quinone reductase, generates the nucleophilic hydroquinone for two distinct rounds of prenylation by the single prenyltransferase TdiB. TdiE is required to shunt the benzoquinone away from an off-pathway monoprenylated species by an as yet unknown mechanism. Overall, we have biochemically characterized the complete biosynthetic pathway to terrequinone A, highlighting the nonoxidative dimerization pathway and the unique asymmetric prenylation involved in its maturation.
机译:由五基因簇tdiA-tdiE生物合成在曲霉属提取物中鉴定出的抗肿瘤真菌代谢物对苯二酚A。在这项工作中,我们在细菌宿主大肠杆菌中过量生产了所有五种蛋白质(TdiA-TdiE),从而完全重建了对苯二酚A的生物合成。该途径涉及氨基转移酶活性,头尾尾二聚化和支架的双异戊烯化以产生苯醌天然产物。我们已经确定,TdiD是依赖吡pyr醛5'-磷酸的L-色氨酸氨基转移酶,通过三结构域非核糖体肽合成酶TdiA产生吲哚丙酮酸,产生异常的非氧化偶联。 TdiC是一种依赖NADH的醌还原酶,它通过单个异戊二烯基转移酶TdiB产生两个不同回合的异戊二烯化反应的亲核对苯二酚。需要TdiE通过未知的机制将苯醌与离路的单异戊二烯化物种分流。总体而言,我们已经生化表征了完整的生物合成途径到对苯二酚A,突出了其成熟过程中涉及的非氧化二聚途径和独特的不对称烯丙基化。

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