Department of Chemistry, The Scripps Research Institute, Jupiter, Florida 33458.
Natural Products Library Initiative, The Scripps Research Institute, Jupiter, Florida 33458.
J Biol Chem. 2019 Nov 8;294(45):16567-16576. doi: 10.1074/jbc.REV119.006514. Epub 2019 Sep 30.
Throughout history, natural products have significantly contributed to the discovery of novel chemistry, drug leads, and tool molecules to probe and address complex challenges in biology and medicine. Recent microbial genome sequencing efforts have uncovered many microbial biosynthetic gene clusters without an associated natural product. This means that the natural products isolated to date do not fully reflect the biosynthetic potential of microbial strains. This observation has rejuvenated the natural product community and inspired a return to microbial strain collections. Mining large microbial strain collections with the most current technologies in genome sequencing, bioinformatics, and high-throughput screening techniques presents new opportunities in natural product discovery. In this review, we report on the newly expanded microbial strain collection at The Scripps Research Institute, which represents one of the largest and most diverse strain collections in the world. Two complementary approaches, structure-centric and function-centric, are presented here to showcase how to leverage a large microbial strain collection for natural product discovery and to address challenges and harness opportunities for future efforts. Highlighted examples include the discovery of alternative producers of known natural products with superior growth characteristics and high titers, novel analogs of privileged scaffolds, novel natural products, and new activities of known and new natural products. We anticipate that this large microbial strain collection will facilitate the discovery of new natural products for many applications.
纵观历史,天然产物在发现新的化学物质、药物先导物和工具分子以探索和解决生物学和医学中的复杂挑战方面做出了重大贡献。最近的微生物基因组测序工作揭示了许多没有相关天然产物的微生物生物合成基因簇。这意味着迄今为止分离的天然产物不能完全反映微生物菌株的生物合成潜力。这一观察结果使天然产物界重新焕发活力,并激发了对微生物菌株集的回归。利用基因组测序、生物信息学和高通量筛选技术的最新技术,对大型微生物菌株集进行挖掘,为天然产物的发现带来了新的机遇。在这篇综述中,我们报告了斯克里普斯研究所新扩展的微生物菌株集,这是世界上最大和最多样化的菌株集之一。本文介绍了两种互补的方法,结构为中心和功能为中心,展示了如何利用大型微生物菌株集进行天然产物的发现,并解决未来努力的挑战和利用机会。突出的例子包括发现具有优越生长特性和高滴度的已知天然产物的替代生产者、特权支架的新型类似物、新型天然产物以及已知和新型天然产物的新活性。我们预计,这个大型微生物菌株集将促进许多应用的新天然产物的发现。