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Biosynthesis of pyranonaphthoquinone polyketides reveals diverse strategies for enzymatic carbon-carbon bond formation

机译:吡喃并萘醌聚酮化合物的生物合成揭示了酶促碳-碳键形成的多种策略

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摘要

Pyranonaphthoquinones synthesized by Streptomyces bacteria via type II polyketide pathways are aromatic compounds build around a common three-ring structure, which is composed of pyran, quinone and benzene rings. Over the years, actinorhodin in particular has served as a model compound for studying the biosynthesis of aromatic polyketides, while some of the other metabolites such as granaticin, medermycin, frenolicin and alnumycin A have enabled comparative studies that complement our understanding how these complex biological systems function and have evolved. In addition, despite the similarity of the aglycone units, pyranonaphthoquinones in effect display remarkable diversity in tailoring reactions, which include numerous enzymatic carbon-carbon bond forming reactions. This review focuses on the current status of molecular genetic, biochemical and structural investigations on this intriguing family of natural products.
机译:链霉菌细菌通过II型聚酮化合物途径合成的吡喃萘甲酚醌是围绕常见的三环结构构建的芳族化合物,该结构由吡喃,醌和苯环组成。多年来,特别是放线菌丝蛋白已成为研究芳香族聚酮化合物生物合成的模型化合物,而其他一些代谢产物,例如花青素,美德霉素,贝宁和阿霉素则使比较研究成为可能,从而补充了我们对这些复杂生物系统的理解功能并不断发展。另外,尽管糖苷配基单元的相似性,吡喃并萘醌实际上在定制反应中显示出显着的多样性,所述定制反应包括许多酶促的碳-碳键形成反应。这篇综述着重介绍了这个有趣的天然产物家族的分子遗传,生物化学和结构研究的现状。

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