Arakawa Kenji
Department of Molecular Biotechnology, Graduate School of Advanced Sciences of Matter, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, Hiroshima, 739-8530, Japan.
Antonie Van Leeuwenhoek. 2018 May;111(5):743-751. doi: 10.1007/s10482-018-1052-6. Epub 2018 Feb 23.
Streptomyces is well characterized by an ability to produce a wide variety of secondary metabolites including antibiotics, whose expression is strictly controlled by small diffusible signaling molecules at nano-molar concentrations. The signaling molecules identified to date are classified into three skeletons; γ-butyrolactones, furans, and γ-butenolides. Accumulated data suggest the structural diversity of the signaling molecules in Streptomyces species and their potential in activating cryptic secondary metabolite biosynthetic pathways. Several genome mining approaches to activate silent biosynthetic gene clusters have been reported for natural product discovery. This review updates recent examples on genetic manipulation including blockage of metabolic pathways together with inactivation of transcriptional repressor genes.
链霉菌的特点是能够产生多种次级代谢产物,包括抗生素,其表达受到纳摩尔浓度的小分子可扩散信号分子的严格控制。迄今为止鉴定出的信号分子可分为三种骨架;γ-丁内酯、呋喃和γ-丁烯内酯。积累的数据表明链霉菌属中信号分子的结构多样性及其激活隐性次级代谢产物生物合成途径的潜力。为了发现天然产物,已经报道了几种激活沉默生物合成基因簇的基因组挖掘方法。这篇综述更新了最近关于基因操作的例子,包括代谢途径的阻断以及转录阻遏基因的失活。