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From the Cover: Retrospective analysis of natural products provides insights for future discovery trends

机译:从封面开始:对天然产物的回顾性分析为未来的发现趋势提供了见解

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摘要

Understanding of the capacity of the natural world to produce secondary metabolites is important to a broad range of fields, including drug discovery, ecology, biosynthesis, and chemical biology, among others. Both the absolute number and the rate of discovery of natural products have increased significantly in recent years. However, there is a perception and concern that the fundamental novelty of these discoveries is decreasing relative to previously known natural products. This study presents a quantitative examination of the field from the perspective of both number of compounds and compound novelty using a dataset of all published microbial and marine-derived natural products. This analysis aimed to explore a number of key questions, such as how the rate of discovery of new natural products has changed over the past decades, how the average natural product structural novelty has changed as a function of time, whether exploring novel taxonomic space affords an advantage in terms of novel compound discovery, and whether it is possible to estimate how close we are to having described all of the chemical space covered by natural products. Our analyses demonstrate that most natural products being published today bear structural similarity to previously published compounds, and that the range of scaffolds readily accessible from nature is limited. However, the analysis also shows that the field continues to discover appreciable numbers of natural products with no structural precedent. Together, these results suggest that the development of innovative discovery methods will continue to yield compounds with unique structural and biological properties.
机译:了解自然界产生次生代谢产物的能力对广泛领域很重要,包括药物发现,生态学,生物合成和化学生物学等。近年来,天然产物的绝对数量和发现速率都显着增加。然而,人们感到并担心,这些发现的根本新颖性相对于先前已知的天然产物正在下降。这项研究使用所有已发表的微生物和海洋来源的天然产物的数据集,从化合物数量和化合物新颖性的角度提出了对该领域的定量检查。该分析旨在探讨许多关键问题,例如过去几十年中新天然产物的发现率如何变化,平均天然产物结构的新颖性如何随时间变化,是否探索新颖的分类空间是否可以就新型化合物发现而言,这是一个优势,并且是否有可能估计我们距离描述天然产物涵盖的所有化学空间有多近。我们的分析表明,今天发表的大多数天然产物与先前发表的化合物具有结构相似性,并且容易从自然界中获得的支架范围有限。但是,分析还表明,该领域继续发现可观数量的天然产物,而没有结构先例。总之,这些结果表明,创新发现方法的发展将继续产生具有独特结构和生物学特性的化合物。

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