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Saccharomyces cerevisiae as a tool for mining studying and engineering fungal polyketide synthases

机译:酿酒酵母(Saccharomyces cerevisiae)作为采矿研究和工程化真菌聚酮化合物合酶的工具

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摘要

Small molecule secondary metabolites produced by organisms such as plants, bacteria, and fungi form a fascinating and important group of natural products, many of which have shown promise as medicines. Fungi in particular have been important sources of natural product polyketide pharmaceuticals. While the structural complexity of these polyketides makes them interesting and useful bioactive compounds, these same features also make them difficult and expensive to prepare and scale-up using synthetic methods. Currently, nearly all commercial polyketides are prepared through fermentation or semi-synthesis. However, elucidation and engineering of polyketide pathways in the native filamentous fungi hosts are often hampered due to a lack of established genetic tools and of understanding of the regulation of fungal secondary metabolisms. Saccharomyces cerevisiae has many advantages beneficial to the study and development of polyketide pathways from filamentous fungi due to its extensive genetic toolbox and well-studied metabolism. This review highlights the benefits S. cerevisiae provides as a tool for mining, studying, and engineering fungal polyketide synthases (PKSs), as well as notable insights this versatile tool has given us into the mechanisms and products of fungal PKSs.
机译:由植物,细菌和真菌等生物产生的小分子次生代谢产物形成了一组引人入胜且重要的天然产物,其中许多已显示出有望作为药物的天然产物。真菌尤其是天然产物聚酮化合物药物的重要来源。尽管这些聚酮化合物的结构复杂性使其成为有趣且有用的生物活性化合物,但这些相同的特征也使它们难以使用合成方法制备和按比例放大。目前,几乎所有的商品聚酮化合物都是通过发酵或半合成制备的。然而,由于缺乏已建立的遗传工具和对真菌次生代谢调控的了解,天然丝状真菌宿主中聚酮化合物途径的阐明和工程设计常常受到阻碍。酿酒酵母具有广泛的遗传工具箱和经过充分研究的代谢,因此具有许多优势,有利于研究和开发丝状真菌的聚酮化合物途径。这篇评论重点介绍了酿酒酵母作为用于采矿,研究和工程化真菌聚酮化合物合酶(PKS)的工具所提供的好处,以及该多功能工具为我们提供了真菌PKS的机理和产物的显着见解。

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  • 作者

    Carly Bond; Yi Tang; Li Li;

  • 作者单位
  • 年(卷),期 -1(89),-1
  • 年度 -1
  • 页码 52–61
  • 总页数 24
  • 原文格式 PDF
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