School of Chemistry, University of St Andrews, St Andrews, KY16 9ST Scotland, UK.
Aquapharm Biodiscovery Ltd., European Centre for Marine Biotechnology, Dunstaffnage, Oban, Argyll, PA37 1QA UK.
Nat Prod Rep. 2016 Jan;33(1):54-72. doi: 10.1039/c5np00111k.
Covering: up to 2015. Over the centuries, microbial secondary metabolites have played a central role in the treatment of human diseases and have revolutionised the pharmaceutical industry. With the increasing number of sequenced microbial genomes revealing a plethora of novel biosynthetic genes, natural product drug discovery is entering an exciting second golden age. Here, we provide a concise overview as an introductory guide to the main methods employed to unlock or up-regulate these so called 'cryptic', 'silent' and 'orphan' gene clusters, and increase the production of the encoded natural product. With a predominant focus on bacterial natural products we will discuss the importance of the bioinformatics approach for genome mining, the use of first different and simple culturing techniques and then the application of genetic engineering to unlock the microbial treasure trove.
截至 2015 年。几个世纪以来,微生物次生代谢产物在治疗人类疾病方面发挥了核心作用,并彻底改变了制药行业。随着越来越多的微生物基因组测序揭示了大量新的生物合成基因,天然产物药物的发现正在进入一个令人兴奋的第二个黄金时代。在这里,我们提供了一个简明的概述,作为一种入门指南,介绍了主要的方法,这些方法被用来解锁或上调这些所谓的“隐性”、“沉默”和“孤儿”基因簇,并增加所编码的天然产物的产量。我们主要关注细菌天然产物,讨论了生物信息学方法在基因组挖掘中的重要性,以及使用最初的不同和简单的培养技术,然后应用遗传工程来挖掘微生物的宝藏。