ACS Chem Biol. 2020 Oct 16;15(10):2783-2791. doi: 10.1021/acschembio.0c00579. Epub 2020 Oct 5.
While several bioactive natural products that contain tetramate or pyridone heterocycles have been described, information on the enzymology underpinning these functionalities has been limited. Here we biochemically characterize an off-loading Dieckmann cyclase, NcmC, that installs the tetramate headgroup in nocamycin, a hybrid polyketide/nonribosomal peptide natural product. Crystal structures of the enzyme (1.6 Å) and its covalent complex with the epoxide cerulenin (1.6 Å) guide additional structure-based mutagenesis and product-profile analyses. Our results offer mechanistic insights into how the conserved thioesterase-like scaffold has been adapted to perform a new chemical reaction, namely, heterocyclization. Additional bioinformatics combined with docking and modeling identifies likely candidates for heterocycle formation in underexplored gene clusters and uncovers a modular basis of substrate recognition by the two subdomains of these Dieckmann cyclases.
虽然已经描述了几种含有四氢呋喃或吡啶酮杂环的生物活性天然产物,但这些功能的酶学基础信息有限。在这里,我们通过生物化学方法对 NcmC 脱载狄克曼环化酶进行了表征,该酶可在诺卡霉素中安装四氢呋喃头基,诺卡霉素是一种混合的聚酮/非核糖体肽天然产物。酶(1.6Å)及其与环氧化物 Cerulenin 的共价复合物的晶体结构(1.6Å)指导了更多基于结构的诱变和产物分析。我们的结果提供了关于保守的硫酯酶样支架如何适应执行新化学反应(即杂环化)的机制见解。额外的生物信息学结合对接和建模确定了在探索较少的基因簇中形成杂环的可能候选物,并揭示了这些狄克曼环化酶的两个亚结构域对底物识别的模块化基础。