Zhang Mingzi M, Qiao Yuan, Ang Ee Lui, Zhao Huimin
a Metabolic Engineering Research Laboratory , Science and Engineering Institutes, Agency for Science, Technology and Research (A*STAR) , Singapore , Singapore.
b Department of Chemical and Biomolecular Engineering , University of Illinois at Urbana-Champaign , Urbana , IL , USA.
Expert Opin Drug Discov. 2017 May;12(5):475-487. doi: 10.1080/17460441.2017.1303478. Epub 2017 Mar 14.
Evolutionarily selected over billions of years for their interactions with biomolecules, natural products have been and continue to be a major source of pharmaceuticals. In the 1990s, pharmaceutical companies scaled down their natural product discovery programs in favor of synthetic chemical libraries due to major challenges such as high rediscovery rates, challenging isolation, and low production titers. Propelled by advances in DNA sequencing and synthetic biology technologies, insights into microbial secondary metabolism provided have inspired a number of strategies to address these challenges. Areas covered: This review highlights the importance of genomics and metagenomics in natural product discovery, and provides an overview of the technical and conceptual advances that offer unprecedented access to molecules encoded by biosynthetic gene clusters. Expert opinion: Genomics and metagenomics revealed nature's remarkable biosynthetic potential and her vast chemical inventory that we can now prioritize and systematically mine for novel chemical scaffolds with desirable bioactivities. Coupled with synthetic biology and genome engineering technologies, significant progress has been made in identifying and predicting the chemical output of biosynthetic gene clusters, as well as in optimizing cluster expression in native and heterologous host systems for the production of pharmaceutically relevant metabolites and their derivatives.
在数十亿年的进化过程中,天然产物因其与生物分子的相互作用而被筛选出来,一直以来都是药物的主要来源,并且仍将如此。在20世纪90年代,由于存在诸如高重复发现率、分离困难以及低产量滴度等重大挑战,制药公司缩减了其天然产物发现计划,转而青睐合成化学文库。在DNA测序和合成生物学技术进步的推动下,对微生物次级代谢的深入了解激发了一系列应对这些挑战的策略。涵盖领域:本综述强调了基因组学和宏基因组学在天然产物发现中的重要性,并概述了技术和概念上的进展,这些进展为获取由生物合成基因簇编码的分子提供了前所未有的途径。专家观点:基因组学和宏基因组学揭示了大自然卓越的生物合成潜力及其丰富的化学物质库,我们现在可以对其进行优先排序并系统挖掘,以获取具有理想生物活性的新型化学支架。结合合成生物学和基因组工程技术,在识别和预测生物合成基因簇的化学产物方面,以及在优化天然和异源宿主系统中的簇表达以生产与药物相关的代谢物及其衍生物方面,已经取得了重大进展。