Kaniusaite Milda, Goode Robert J A, Tailhades Julien, Schittenhelm Ralf B, Cryle Max J
The Monash Biomedicine Discovery Institute, Department of Biochemistry and Molecular Biology, Monash University Clayton Victoria 3800 Australia
EMBL Australia, Monash University Clayton Victoria 3800 Australia.
Chem Sci. 2020 Aug 24;11(35):9443-9458. doi: 10.1039/d0sc03483e.
Non-ribosomal peptide synthesis is an important biosynthesis pathway in secondary metabolism. In this study we have investigated modularisation and redesign strategies for the glycopeptide antibiotic teicoplanin. Using the relocation or exchange of domains within the NRPS modules, we have identified how to initiate peptide biosynthesis and explored the requirements for the functional reengineering of both the condensation/adenylation domain and epimerisation/condensation domain interfaces. We have also demonstrated strategies that ensure communication between isolated NRPS modules, leading to new peptide assembly pathways. This provides important insights into NRPS reengineering of glycopeptide antibiotic biosynthesis and has broad implications for the redesign of other NRPS systems.
非核糖体肽合成是次生代谢中一条重要的生物合成途径。在本研究中,我们研究了糖肽抗生素替考拉宁的模块化和重新设计策略。通过在非核糖体肽合成酶(NRPS)模块内重新定位或交换结构域,我们确定了启动肽生物合成的方法,并探索了缩合/腺苷化结构域和差向异构化/缩合结构域界面功能重新工程的要求。我们还展示了确保分离的NRPS模块之间通信的策略,从而产生新的肽组装途径。这为糖肽抗生素生物合成的NRPS重新工程提供了重要见解,并对其他NRPS系统的重新设计具有广泛影响。