Wei Hongjuan, Lin Zhenjian, Li Dehai, Gu Qianqun, Zhu Tianjiao
Key Laboratory of Marine Drugs,Chinese Ministry of Education,Institute of Marine Drugs and Food,Ocean University of China,Qingdao 266003, China.
Wei Sheng Wu Xue Bao. 2010 Jun;50(6):701-9.
Microbial secondary metabolites have a wide range of biological activities due to their structural diversity and have been proved a major source for drug lead compounds. However,the traditional method of a single culture restricts the metabolic pathways of microorganisms and as a result many metabolites cannot be formed. Recently,it has attracted much attention to use various techniques to activate those metabolic pathways restricted by the traditional method to get metabolic products with rich variety of structures. "One strain many compounds" (OSMAC) is a simple and effective approach for activating metabolic pathways and has been successfully applied. This review summarizes the common strategies of the OSMAC approach (altering cultivation parameters, co-cultivation, addition of enzyme inhibitors, etc) and the recent advances of OSMAC combined with genomics scanning. This review also introduces the research of our studies using the OSMAC approach on a fungus Spicaria elegans KLA03 which yielded a series of cytochalasins.
微生物次级代谢产物因其结构多样性而具有广泛的生物活性,已被证明是药物先导化合物的主要来源。然而,传统的单一培养方法限制了微生物的代谢途径,导致许多代谢产物无法形成。近年来,利用各种技术激活受传统方法限制的代谢途径以获得结构丰富多样的代谢产物受到了广泛关注。“一株多化合物”(OSMAC)是一种激活代谢途径的简单有效方法,并已得到成功应用。本文综述了OSMAC方法的常见策略(改变培养参数、共培养、添加酶抑制剂等)以及OSMAC与基因组扫描相结合的最新进展。本文还介绍了我们利用OSMAC方法对秀丽针孢菌KLA03进行研究的情况,该菌株产生了一系列细胞松弛素。