School of Chemistry, The University of Sydney, Camperdown, Sydney, NSW 2006, Australia.
Microbial Screening Technologies, Smithfield, Sydney, NSW 2164, Australia.
Molecules. 2022 Jan 28;27(3):887. doi: 10.3390/molecules27030887.
The genus has been a rich source of bioactive natural products, medicinal chemicals, and novel drug leads for three-quarters of a century. Yet studies suggest that the genus is capable of making some 150,000 more bioactive compounds than all secondary metabolites reported to date. Researchers around the world continue to explore this enormous potential using a range of strategies including modification of culture conditions, bioinformatics and genome mining, heterologous expression, and other approaches to cryptic biosynthetic gene cluster activation. Our survey of the recent literature, with a particular focus on the year 2020, brings together more than 70 novel secondary metabolites from species, which are discussed in this review. This diverse array includes cyclic and linear peptides, peptide derivatives, polyketides, terpenoids, polyaromatics, macrocycles, and furans, the isolation, chemical structures, and bioactivity of which are appraised. The discovery of these many different compounds demonstrates the continued potential of as a source of new and interesting natural products and contributes further important pieces to the mostly unfinished puzzle of Earth's myriad microbes and their multifaceted chemical output.
该属种是生物活性天然产物、药用化学品和新型药物先导化合物的丰富来源,已有四分之三个世纪之久。然而,研究表明,该属种可能能够产生多达 15 万种以上的生物活性化合物,比迄今为止报道的所有次生代谢产物都多。全世界的研究人员继续使用各种策略探索这一巨大的潜力,包括改变培养条件、生物信息学和基因组挖掘、异源表达以及其他方法来激活隐匿生物合成基因簇。我们对最近文献的调查,特别是对 2020 年的调查,汇集了 70 多种来自 种的新型次生代谢产物,本文对这些产物进行了讨论。这些多样的化合物包括环状和线性肽、肽衍生物、聚酮、萜类、多芳烃、大环和呋喃,评估了它们的分离、化学结构和生物活性。这些不同化合物的发现证明了 作为新型有趣天然产物的来源的持续潜力,并为地球众多微生物及其多方面化学产物这一大部分未完成的谜题增添了更多重要内容。