Martinez Asuncion, Kolvek Steven J, Yip Choi Lai Tiong, Hopke Joern, Brown Kara A, MacNeil Ian A, Osburne Marcia S
Cambridge Genomics Center, Aventis Pharmaceuticals Inc., Cambridge, Massachusetts 02139, USA.
Appl Environ Microbiol. 2004 Apr;70(4):2452-63. doi: 10.1128/AEM.70.4.2452-2463.2004.
The enormous diversity of uncultured microorganisms in soil and other environments provides a potentially rich source of novel natural products, which is critically important for drug discovery efforts. Our investigators reported previously on the creation and screening of an Escherichia coli library containing soil DNA cloned and expressed in a bacterial artificial chromosome (BAC) vector. In that initial study, our group identified novel enzyme activities and a family of antibacterial small molecules encoded by soil DNA cloned and expressed in E. coli. To continue our pilot study of the utility and feasibility of this approach to natural product drug discovery, we have expanded our technology to include Streptomyces lividans and Pseudomonas putida as additional hosts with different expression capabilities, and herein we describe the tools we developed for transferring environmental libraries into all three expression hosts and screening for novel activities. These tools include derivatives of S. lividans that contain complete and unmarked deletions of the act and red endogenous pigment gene clusters, a derivative of P. putida that can accept environmental DNA vectors and integrate the heterologous DNA into the chromosome, and new BAC shuttle vectors for transferring large fragments of environmental DNA from E. coli to both S. lividans and P. putida by high-throughput conjugation. Finally, we used these tools to confirm that the three hosts have different expression capabilities for some known gene clusters.
土壤及其他环境中未培养微生物的巨大多样性为新型天然产物提供了潜在的丰富来源,这对于药物研发工作至关重要。我们的研究人员此前报道了一个大肠杆菌文库的构建与筛选,该文库包含在细菌人工染色体(BAC)载体中克隆并表达的土壤DNA。在最初的研究中,我们小组鉴定出了新的酶活性以及由在大肠杆菌中克隆并表达的土壤DNA编码的一类抗菌小分子。为继续开展我们关于这种天然产物药物发现方法的实用性和可行性的初步研究,我们扩展了技术,将淡紫链霉菌和恶臭假单胞菌纳入作为具有不同表达能力的额外宿主,在此我们描述了为将环境文库转移到所有三种表达宿主并筛选新活性而开发的工具。这些工具包括淡紫链霉菌的衍生物,其包含放线紫红素和红色素内源性色素基因簇的完全且无标记缺失;恶臭假单胞菌的衍生物,其能够接受环境DNA载体并将异源DNA整合到染色体中;以及新的BAC穿梭载体,用于通过高通量接合将大片段环境DNA从大肠杆菌转移到淡紫链霉菌和恶臭假单胞菌中。最后,我们使用这些工具证实了这三种宿主对于一些已知基因簇具有不同的表达能力。