Leiden University, Leiden Institute of Chemistry, Netherlands.
Nat Prod Rep. 2011 Jul;28(7):1311-33. doi: 10.1039/c1np00003a. Epub 2011 May 25.
Streptomycetes and other actinobacteria are renowned as a rich source of natural products of clinical, agricultural and biotechnological value. They are being mined with renewed vigour, supported by genome sequencing efforts, which have revealed a coding capacity for secondary metabolites in vast excess of expectations that were based on the detection of antibiotic activities under standard laboratory conditions. Here we review what is known about the control of production of so-called secondary metabolites in streptomycetes, with an emphasis on examples where details of the underlying regulatory mechanisms are known. Intriguing links between nutritional regulators, primary and secondary metabolism and morphological development are discussed, and new data are included on the carbon control of development and antibiotic production, and on aspects of the regulation of the biosynthesis of microbial hormones. Given the tide of antibiotic resistance emerging in pathogens, this review is peppered with approaches that may expand the screening of streptomycetes for new antibiotics by awakening expression of cryptic antibiotic biosynthetic genes. New technologies are also described that have potential to greatly further our understanding of gene regulation in what is an area fertile for discovery and exploitation
链霉菌和其他放线菌是具有临床、农业和生物技术价值的天然产物的丰富来源,它们被重新挖掘,得到了基因组测序工作的支持,这些工作揭示了编码次生代谢产物的能力远远超出了基于在标准实验室条件下检测抗生素活性的预期。在这里,我们回顾了链霉菌中所谓次生代谢产物生产的控制,重点介绍了已知调控机制细节的例子。讨论了营养调节剂、初级和次级代谢物以及形态发育之间的有趣联系,并提供了关于碳对发育和抗生素生产控制以及微生物激素生物合成调控方面的新数据。鉴于病原体中出现的抗生素耐药性浪潮,本综述中提到了一些方法,这些方法可能通过唤醒隐藏的抗生素生物合成基因的表达来扩大对新抗生素的链霉菌筛选。还描述了一些新技术,这些技术有可能极大地促进我们对这一领域的基因调控的理解,该领域在发现和开发方面具有很大的潜力。