Department of Chemistry and Biochemistry, California State University-Dominguez Hills, Carson, CA, 90747, USA.
Department of Chemistry and Biochemistry, University of California Santa Cruz, Santa Cruz, CA, 95064, USA.
J Antibiot (Tokyo). 2020 Aug;73(8):504-525. doi: 10.1038/s41429-020-0330-5. Epub 2020 Jun 8.
Marine-derived bacteria are a prolific source of a wide range of structurally diverse natural products. This review, dedicated to Professor William Fenical, begins by showcasing many seminal discoveries made at the University of California San Diego from marine-derived actinomycetes. Discussed early on is the 20-year journey of discovery and advancement of the seminal actinomycetes natural product salinosporamide A into Phase III anticancer clinical trials. There are many fascinating parallels discussed that were gleaned from the comparative literature of marine sponge, tunicate, and bacteria-derived natural products. Identifying bacterial biosynthetic machinery housed in sponge and tunicate holobionts through both culture-independent and culture-dependent approaches is another important and expanding subject that is analyzed. Work reviewed herein also evaluates the hypotheses that many marine invertebrate-derived natural products are biosynthesised by associated or symbiotic bacteria. The insights and outcomes from metagenomic sequencing and synthetic biology to expand molecule discovery continue to provide exciting outcomes and they are predicted to be the source of the next generation of novel marine natural product chemical scaffolds.
海洋来源的细菌是广泛结构多样的天然产物的丰富来源。本综述是献给威廉·芬尼卡教授的,首先展示了加利福尼亚大学圣地亚哥分校从海洋放线菌中获得的许多重要发现。早期讨论的是具有开创性的放线菌天然产物 Salinosporamide A 从发现到进入 III 期抗癌临床试验的 20 年探索和进展历程。从海绵、被囊动物和细菌来源的天然产物的比较文献中汲取了许多有趣的相似之处。通过非培养和培养依赖的方法来鉴定海绵和被囊动物共生体中包含的细菌生物合成机制是另一个正在分析的重要且不断扩展的主题。本文还评价了以下假设,即许多海洋无脊椎动物来源的天然产物是由相关或共生细菌生物合成的。通过宏基因组测序和合成生物学来扩展分子发现的见解和结果继续提供令人兴奋的结果,预计它们将成为下一代新型海洋天然产物化学支架的来源。