生物
异源表达
基因簇
聚酮
链霉菌
克隆(编程)
异源的
克隆载体
聚酮合酶
同色链霉菌
大肠杆菌
穿梭机载体
非核糖体肽
多克隆站点
基因
表达式向量
白色链霉菌
遗传学
分子克隆
生物合成
基因表达
载体(分子生物学)
细菌
重组DNA
计算机科学
程序设计语言
作者
Hongbo Liu,Hao Jiang,Brad Haltli,Kerry Kulowski,Elwira Muszynska,Xidong Feng,Mia Y. Summers,Mairead Young,Edmund I. Graziani,Frank E. Koehn,Guy T. Carter,Min He
摘要
Expression of biosynthetic pathways in heterologous hosts is an emerging approach to expedite production improvement and biosynthetic modification of natural products derived from microbial secondary metabolites. Herein we describe the development of a versatile Escherichia coli−Streptomyces shuttle Bacterial Artificial Chromosomal (BAC) conjugation vector, pSBAC, to facilitate the cloning, genetic manipulation, and heterologous expression of actinomycetes secondary metabolite biosynthetic gene clusters. The utility of pSBAC was demonstrated through the rapid cloning and heterologous expression of one of the largest polyketide synthase (PKS) and nonribosomal peptide synthetase (NRPS) biosynthetic pathways: the meridamycin biosynthesis gene cluster (mer). The entire mer gene cluster (∼90 kb) was captured in a single pSBAC clone through a straightforward restriction enzyme digestion and cloning approach and transferred into Streptomyces lividans. The production of meridamycin (1) in the heterologous host was achieved after replacement of the original promoter with an ermE* promoter and was enhanced by feeding with a biosynthetic precursor. The success of heterologous expression of such a giant gene cluster demonstrates the versatility of BAC cloning technology and paves the road for future exploration of expression of the meridamycin biosynthetic pathway in various hosts, including strains that have been optimized for polyketide production.
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