State Key Laboratory of Natural Medicines, School of Traditional Chinese Pharmacy, China Pharmaceutical University, Nanjing, 211198, China.
State Key Laboratory of Natural Medicines, School of Traditional Chinese Pharmacy, China Pharmaceutical University, Nanjing, 211198, China.
Eur J Med Chem. 2024 Mar 15;268:116175. doi: 10.1016/j.ejmech.2024.116175. Epub 2024 Jan 26.
Microbial secondary metabolites are pivotal for the development of novel drugs. However, conventional culture techniques, have left a vast array of unexpressed biosynthetic gene clusters (BGCs) in microorganisms, hindering the discovery of metabolites with distinct structural features and diverse biological functions. To address this limitation, several innovative strategies have been emerged. The "One Strain Many Compounds" (OSMAC) strategy, which involves altering microbial culture conditions, has proven to be particularly effective in mining numerous novel secondary metabolites for the past few years. Among these, microbial cyclic peptides stand out. These peptides often comprise rare amino acids, unique chemical structures, and remarkable biological function. With the advancement of the OSMAC strategy, a plethora of new cyclic peptides have been identified from diverse microbial genera. This work reviews the progress in mining novel compounds using the OSMAC strategy and the applications of this strategy in discovering 284 microbial cyclic peptides from 63 endophytic strains, aiming to offer insights for the further explorations into novel active cyclic peptides.
微生物次生代谢产物是开发新型药物的关键。然而,传统的培养技术使得微生物中存在大量未表达的生物合成基因簇(BGCs),这阻碍了具有独特结构特征和多样化生物功能的代谢产物的发现。为了解决这个限制,已经出现了几种创新策略。“一种菌株多种化合物”(OSMAC)策略,涉及改变微生物培养条件,在过去几年中被证明在挖掘大量新型次生代谢产物方面非常有效。其中,微生物环状肽脱颖而出。这些肽通常包含稀有氨基酸、独特的化学结构和显著的生物功能。随着 OSMAC 策略的进步,已经从不同的微生物属中鉴定出了大量的新环状肽。这项工作综述了使用 OSMAC 策略挖掘新型化合物的进展,以及该策略在发现 63 种内生菌株的 284 种微生物环状肽中的应用,旨在为进一步探索新型活性环状肽提供见解。