Watanabe Kenji, Oikawa Hideaki
Department of Pharmaceutical Sciences, University of Southern California, 1985 Zonal Ave PSC 718, Los Angeles, California 90033, USA.
Org Biomol Chem. 2007 Feb 21;5(4):593-602. doi: 10.1039/b615589h. Epub 2006 Dec 21.
During the past decade, numerous gene clusters responsible for the biosynthesis of important natural products have been identified from a variety of organisms. Heterologous expression utilizing E. coli has been employed to provide proteins for mechanistic understanding and structural analyses. It was very recently shown that this system is also capable of de novo production of biologically active forms of heterologous nonribosomal peptides, echinomycin and triostin A, through the introduction of genes encoding modules responsible for their assembly into this model bacterial host. The superlative advantage of using E. coli as a heterologous host is the availability of a wealth of well-established molecular biological techniques for its genetic and metabolic manipulation. The platform described above which was developed in our laboratory is ideal for use in the production of metabolites found in marine and symbiotic bacteria that are not amenable to artificial cultivation. Development and tailoring of our system will allow for the design of these natural products and ultimately combinatorial yet rational modification of these compounds. This review focuses on the heterologous expression of biosynthetic gene clusters for the assembly of therapeutically potent compounds.
在过去十年中,已从多种生物体中鉴定出许多负责重要天然产物生物合成的基因簇。利用大肠杆菌进行异源表达已被用于提供蛋白质,以进行机理理解和结构分析。最近有研究表明,通过将负责其组装的模块编码基因导入这种模式细菌宿主,该系统还能够从头生产具有生物活性形式的异源非核糖体肽、棘霉素和三素星A。使用大肠杆菌作为异源宿主的最大优势在于,有大量成熟的分子生物学技术可用于其遗传和代谢操作。我们实验室开发的上述平台非常适合用于生产海洋细菌和共生细菌中发现的、难以人工培养的代谢产物。对我们系统的开发和调整将有助于设计这些天然产物,并最终对这些化合物进行组合且合理的修饰。本综述聚焦于用于组装具有治疗活性化合物的生物合成基因簇的异源表达。