Department of Chemistry, University of Florida, Gainesville, Florida 32611, United States.
J Org Chem. 2021 Aug 20;86(16):11212-11219. doi: 10.1021/acs.joc.1c00785. Epub 2021 Jul 15.
Microviridins are cyanobacterial tricyclic depsipeptides with unique ring architectures and function as serine protease inhibitors. In this study, we explore two strategies to probe the structure and mechanism of macrocyclases involved in microviridin biosynthesis. The results both provide approaches for chemoenzymatic synthesis and insight into the molecular interactions and function of the biosynthetic enzymes. The first strategy involves generating constitutively activated macrocyclases whereby the leader portion of the substrate peptide is covalently attached to the ATP-grasp ligases to examine leader peptide/enzyme interactions. The second strategy uses a structure-based design to create disulfide cross-linked peptide/enzyme complexes. Together, the strategies provide constitutively active enzymes and tools to study the catalysis of the macrocyclizations on synthetic core peptides.
微绿菌素是一类具有独特环结构的蓝藻三环缩肽,作为丝氨酸蛋白酶抑制剂发挥功能。在这项研究中,我们探索了两种策略来研究参与微绿菌素生物合成的环化酶的结构和机制。这两种策略都为化学酶合成提供了方法,并深入了解了生物合成酶的分子相互作用和功能。第一种策略涉及生成组成型激活的环化酶,即将底物肽的前导部分共价连接到 ATP 识别结构域 ligases 上来研究前导肽/酶的相互作用。第二种策略使用基于结构的设计来创建二硫键交联的肽/酶复合物。总之,这些策略提供了组成型激活的酶和工具,用于研究合成核心肽中环化反应的催化。