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首页> 外文期刊>Angewandte Chemie >Guanitrypmycin Biosynthetic Pathways Imply Cytochrome P450 Mediated Regio- and Stereospecific Guaninyl-Transfer Reactions
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Guanitrypmycin Biosynthetic Pathways Imply Cytochrome P450 Mediated Regio- and Stereospecific Guaninyl-Transfer Reactions

机译:鸟霉素生物合成途径意味着细胞色素P450介导的宫内节育和立体胍基转移反应

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摘要

Mining microbial genomes including those of Streptomyces reveals the presence of a large number of biosynthetic gene clusters. Unraveling this genetic potential has proved to be a useful approach for novel compound discovery. Here, we report the heterologous expression of two similar P450-associated cyclodipeptide synthase-containing gene clusters in Streptomyces coelicolor and identification of eight rare and novel natural products, the C3-guaninyl indole alkaloids guanitrypmycins. Expression of different gene combinations proved that the cyclodipeptide synthases assemble cyclo-l-Trp-l-Phe and cyclo-l-Trp-l-Tyr, which are consecutively and regiospecifically modified by cyclodipeptide oxidases, cytochrome P450 enzymes, and N-methyltransferases. In vivo and in vitro results proved that the P450 enzymes function as key biocatalysts and catalyze the regio- and stereospecific 3 alpha-guaninylation at the indole ring of the tryptophanyl moiety. Isotope-exchange experiments provided evidence for the non-enzymatic epimerization of the biosynthetic pathway products via keto-enol tautomerism. This post-pathway modification during cultivation further increases the structural diversity of guanitrypmycins.
机译:包括链霉菌的挖掘微生物基因组揭示了大量生物合成基因簇的存在。揭开这种遗传潜力已被证明是新型复合探测的一种有用的方法。在这里,我们报告了两种类似的P450相关环肽合酶的基因簇的异源表达,在链霉菌中的共霉菌和鉴定八个稀有的新型天然产物,C3-胍吲哚生物碱的冠尿嘧啶。不同基因组合的表达证明,环糊精合成酶组合环-1-TRP-L-PHE和环-1-TRP-L-TYR,其通过环豆肽氧化酶,细胞色素P450酶和N-甲基转移酶连续和再现地改性。体内和体外结果证明,P450酶作为关键生物催化剂,并催化在色氨酸部分的吲哚环处的测定和立体特异性3α-蒽醌。同位素 - 交换实验提供了通过酮烯互抗切征的生物合成途径产物的非酶促缩写的证据。这种培养后的途径改性进一步增加了胍基霉素的结构多样性。

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