Kantola J, Kunnari T, Mäntsälä P, Ylihonkoa K
Galilaeus Oy, Kaarina, Finland.
Comb Chem High Throughput Screen. 2003 Sep;6(6):501-12. doi: 10.2174/138620703106298680.
Combinatorial biosynthesis is a technology for mixing genes responsible for the biosynthesis of secondary metabolites, in order to generate products for compound libraries serendipitously or to cause desired modifications to natural products. Both of these approaches are extremely useful in drug discovery. Streptomyces and related species are abundant in bioactive secondary metabolites and were therefore the first microbes to be used for combinatorial biosynthesis. Polyketides are the most abundant medicinal agents among natural products. Structural diversity and a wide scope of bioactivities are typical of the group. However, the common feature of polyketides is a biosynthetic process from simple carboxylic acid residues. In molecular genetics, polyketides are sub-classified as types I and II, called modular and aromatic polyketides respectively. The best-known bioactivities of aromatic polyketides are their antibacterial and antitumor effects. Genetic analysis of aromatic polyketides has resulted in almost 30 cloned and identified biosynthetic gene clusters. Several biosynthetic enzymes are flexible enough to allow their use in combinatorial biosynthesis to create high diversity compound libraries. This review describes the state of the art of combinatorial biosynthesis, giving anthracyclines as examples. Contiguous DNA sequences for antibiotics, cloned from four different anthracycline producers, provide tools for rapid lead optimization or other structural modification processes, and not only for anthracyclines. Two gene cassettes enabling fast and flexible structural modification of polyketides are introduced in this paper.
组合生物合成是一种用于混合负责次生代谢物生物合成的基因的技术,目的是意外地生成用于化合物库的产物,或对天然产物进行所需的修饰。这两种方法在药物发现中都极为有用。链霉菌及相关物种富含生物活性次生代谢物,因此是最早用于组合生物合成的微生物。聚酮化合物是天然产物中最丰富的药物。该类化合物具有典型的结构多样性和广泛的生物活性。然而,聚酮化合物的共同特征是由简单羧酸残基进行生物合成的过程。在分子遗传学中,聚酮化合物被分为I型和II型,分别称为模块聚酮化合物和芳香聚酮化合物。芳香聚酮化合物最广为人知的生物活性是其抗菌和抗肿瘤作用。对芳香聚酮化合物的遗传分析已产生了近30个克隆并鉴定的生物合成基因簇。几种生物合成酶具有足够的灵活性,可用于组合生物合成以创建高度多样化的化合物库。本综述以蒽环类药物为例描述了组合生物合成的现状。从四种不同的蒽环类药物生产菌株中克隆的抗生素连续DNA序列,不仅为蒽环类药物,也为快速先导优化或其他结构修饰过程提供了工具。本文介绍了两种能够快速灵活地修饰聚酮化合物结构的基因盒。