Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, Illinois 61801, United States.
Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, 1206 West Gregory Drive, Urbana, Illinois 61801, United States.
J Am Chem Soc. 2022 Nov 23;144(46):21116-21124. doi: 10.1021/jacs.2c07377. Epub 2022 Nov 9.
Thiazole-containing pyritides (thiopeptides) are ribosomally synthesized and post-translationally modified peptides (RiPPs) that have attracted interest owing to their potent biological activities and structural complexity. The class-defining feature of a thiopeptide is a six-membered, nitrogenous heterocycle formed by an enzymatic [4 + 2]-cycloaddition. In rare cases, piperidine or dehydropiperidine (DHP) is present; however, the aromatized pyridine is considerably more common. Despite significant effort, the mechanism by which the central pyridine is formed remains poorly understood. Building on our recent observation of the Bycroft-Gowland intermediate (i.e., the direct product of the [4 + 2]-cycloaddition), we interrogated thiopeptide pyridine synthases using a combination of targeted mutagenesis, kinetic assays, substrate analogs, enzyme-substrate cross-linking, and chemical rescue experiments. Collectively, our data delineate roles for several conserved residues in thiopeptide pyridine synthases. A critical tyrosine facilitates the final aromatization step of pyridine formation. This work provides a foundation for further exploration of the [4 + 2]-cycloaddition reaction and future customization of pyridine-containing macrocyclic peptides.
含噻唑的硫肽(硫肽类)是核糖体合成和翻译后修饰的肽(RiPPs),由于其强大的生物活性和结构复杂性而引起了人们的兴趣。硫肽的特征在于一个由酶促[4 + 2]-环加成形成的六元、含氮杂环。在极少数情况下,存在哌啶或脱水哌啶(DHP);然而,芳构化的吡啶则更为常见。尽管进行了大量的研究,但形成中心吡啶的机制仍知之甚少。基于我们最近对 Bycroft-Gowland 中间体(即[4 + 2]-环加成的直接产物)的观察,我们使用靶向诱变、动力学测定、底物类似物、酶-底物交联和化学拯救实验的组合,对硫肽吡啶合酶进行了研究。总的来说,我们的数据描述了硫肽吡啶合酶中几个保守残基的作用。关键的酪氨酸有助于吡啶形成的最后芳构化步骤。这项工作为进一步探索[4 + 2]-环加成反应和未来定制含吡啶的大环肽提供了基础。