Rackham Emma J, Grüschow Sabine, Goss Rebecca J M
School of Chemistry, University of East Anglia, Norwich, UK.
Bioeng Bugs. 2011 Jul-Aug;2(4):218-21. doi: 10.4161/bbug.2.4.15877. Epub 2011 Jul 1.
There is an urgent need for new antibiotics with resistance continuing to emerge toward existing classes. The pacidamycin antibiotics possess a novel scaffold and exhibit unexploited bioactivity rendering them attractive research targets. We recently reported the first identification of a biosynthetic cluster encoding uridyl peptide antibiotic assembly and the engineering of pacidamycin biosynthesis into a heterologous host. We report here our methods toward identifying the biosynthetic cluster. Our initial experiments employed conventional methods of probing a cosmid library using PCR and Southern blotting, however it became necessary to adopt a state-of-the-art genome scanning and in silico hybridization approach to pin point the cluster. Here we describe our "real" and "virtual" probing methods and contrast the benefits and pitfalls of each approach.
由于现有抗生素类别不断出现耐药性,因此迫切需要新型抗生素。帕西达霉素类抗生素具有新型骨架,并展现出尚未开发的生物活性,使其成为具有吸引力的研究目标。我们最近报告了首次鉴定出编码尿苷肽抗生素组装的生物合成基因簇,并将帕西达霉素生物合成工程导入异源宿主。我们在此报告我们鉴定该生物合成基因簇的方法。我们最初的实验采用了使用PCR和Southern印迹探测粘粒文库的传统方法,然而有必要采用最先进的基因组扫描和计算机杂交方法来确定该基因簇。在此,我们描述我们的“实际”和“虚拟”探测方法,并对比每种方法的优缺点。