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表阿霉素生物合成的体外表征:L-色氨酰-S-酶的形成和羟化以及(2S,3S)β-羟基色氨酸的氧化。

In vitro characterization of echinomycin biosynthesis: formation and hydroxylation of L-tryptophanyl-S-enzyme and oxidation of (2S,3S) β-hydroxytryptophan.

机构信息

State Key Laboratory of Microbial Metabolism and School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, People's Republic of China.

出版信息

PLoS One. 2013;8(2):e56772. doi: 10.1371/journal.pone.0056772. Epub 2013 Feb 21.

Abstract

Quinoxaline-2-carboxylic acid (QXC) and 3-hydroxyquinaldic acid (HQA) feature in quinomycin family and confer anticancer activity. In light of the significant potency against cancer, the biosynthetic gene clusters have been reported from many different Streptomyces strains, and the biosynthetic pathway were proposed mainly based on the in vivo feeding experiment with isotope labeled putative intermediates. Herein we report another gene cluster from Streptomyces griseovariabilis subsp. bandungensis subsp. nov responsible for the biosynthesis of echinomycin (a member of quinomycin family, also named quinomycin A) and presented in vitro evidence to corroborate the previous hypothesis on QXC biosynthesis, showing that only with the assistance of a MbtH-like protein Qui5, did the didomain NRPS protein (Qui18) perform the loading of a L-tryptophan onto its own PCP domain. Particularly, it was found that Qui5 and Qui18 subunits form a functional tetramer through size exclusion chromatography. The subsequent hydroxylation on β-carbon of the loaded L-tryptophan proved in vitro to be completed by cytochrome P450-dependent hydroxylase Qui15. Importantly, only the Qui18 loaded L-tryptophan can be hydroxylated by Qui15 and the enzyme was inactive on free L-tryptophan. Additionally, the chemically synthesized (2S,3S) β-hydroxytryptophan was detected to be converted by the tryptophan 2,3-dioxygenase Qui17 through LC-MS, which enriched our previous knowledge that tryptophan 2,3-dioxygenase nearly exclusively acted on L-tryptophan and 6-fluoro-tryptophan.

摘要

喹喔啉-2-羧酸(QXC)和 3-羟基喹哪啶酸(HQA)是醌霉素家族的特征,具有抗癌活性。鉴于其对癌症的显著功效,许多不同的链霉菌菌株都报道了生物合成基因簇,并且主要基于用同位素标记的假定中间产物进行体内喂养实验提出了生物合成途径。在此,我们报道了来自链霉菌灰色变体亚种的另一个基因簇。负责合成埃希霉素(醌霉素家族的成员,也称为醌霉素 A),并提供体外证据证实了先前关于 QXC 生物合成的假设,表明只有在 MbtH 样蛋白 Qui5 的帮助下,didomain NRPS 蛋白(Qui18)才能将 L-色氨酸加载到其自身的 PCP 结构域上。特别是,通过尺寸排阻色谱发现 Qui5 和 Qui18 亚基通过形成功能四聚体。随后在体外证明,β-碳上加载的 L-色氨酸的羟化作用由细胞色素 P450 依赖性羟化酶 Qui15 完成。重要的是,只有 Qui18 加载的 L-色氨酸才能被 Qui15 羟化,并且该酶对游离 L-色氨酸无活性。此外,通过 LC-MS 检测到化学合成的(2S,3S)β-羟基色氨酸被色氨酸 2,3-加双氧酶 Qui17 转化,这丰富了我们以前的知识,即色氨酸 2,3-加双氧酶几乎专门作用于 L-色氨酸和 6-氟色氨酸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8be9/3578932/40f40fb91a7e/pone.0056772.g001.jpg

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