On the evolution of natural product biosynthesis.

2区 生物学 Q1 Biochemistry, Genetics and Molecular Biology Advances in Microbial Physiology Pub Date : 2023-01-01 DOI:10.1016/bs.ampbs.2023.05.001
Francisco Barona-Gómez, Marc G Chevrette, Paul A Hoskisson
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Abstract

Natural products are the raw material for drug discovery programmes. Bioactive natural products are used extensively in medicine and agriculture and have found utility as antibiotics, immunosuppressives, anti-cancer drugs and anthelminthics. Remarkably, the natural role and what mechanisms drive evolution of these molecules is relatively poorly understood. The exponential increase in genome and chemical data in recent years, coupled with technical advances in bioinformatics and genetics have enabled progress to be made in understanding the evolution of biosynthetic gene clusters and the products of their enzymatic machinery. Here we discuss the diversity of natural products, incorporating the mechanisms that govern evolution of metabolic pathways and how this can be applied to biosynthetic gene clusters. We build on the nomenclature of natural products in terms of primary, integrated, secondary and specialised metabolism and place this within an ecology-evolutionary-developmental biology framework. This eco-evo-devo framework we believe will help to clarify the nature and use of the term specialised metabolites in the future.

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天然产物生物合成的进化。
天然产物是药物发现计划的原料。具有生物活性的天然产物广泛应用于医药和农业,并已被用作抗生素、免疫抑制剂、抗癌药物和驱虫药。值得注意的是,人们对这些分子的自然作用和驱动进化的机制知之甚少。近年来,基因组和化学数据呈指数级增长,加上生物信息学和遗传学的技术进步,使得人们在理解生物合成基因簇的进化及其酶促机制的产物方面取得了进展。在这里,我们讨论了天然产物的多样性,结合了控制代谢途径进化的机制,以及如何将其应用于生物合成基因簇。我们以初级、综合、次级和专门代谢的天然产物命名为基础,并将其置于生态-进化-发育生物学框架内。我们相信,这个生态-进化-发展框架将有助于澄清“特殊代谢物”一词的性质和用途。
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来源期刊
Advances in Microbial Physiology
Advances in Microbial Physiology 生物-生化与分子生物学
CiteScore
6.20
自引率
0.00%
发文量
16
期刊介绍: Advances in Microbial Physiology publishes topical and important reviews, interpreting physiology to include all material that contributes to our understanding of how microorganisms and their component parts work. First published in 1967, the editors have always striven to interpret microbial physiology in the broadest context and have never restricted the contents to traditional views of whole cell physiology.
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Preface. Biological functions of bacterial lysophospholipids. Redefining the bacterial Type I protein secretion system. Purine catabolism by enterobacteria. Fumarate, a central electron acceptor for Enterobacteriaceae beyond fumarate respiration and energy conservation.
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