Department of Chemistry, Graduate School of Science, The University of Tokyo, Bunkyo, Tokyo, Japan.
Nat Commun. 2021 Jan 29;12(1):696. doi: 10.1038/s41467-021-20992-0.
Azoles are five-membered heterocycles often found in the backbones of peptidic natural products and synthetic peptidomimetics. Here, we report a method of ribosomal synthesis of azole-containing peptides involving specific ribosomal incorporation of a bromovinylglycine derivative into the nascent peptide chain and its chemoselective conversion to a unique azole structure. The chemoselective conversion was achieved by posttranslational dehydrobromination of the bromovinyl group and isomerization in aqueous media under fairly mild conditions. This method enables us to install exotic azole groups, oxazole and thiazole, at designated positions in the peptide chain with both linear and macrocyclic scaffolds and thereby expand the repertoire of building blocks in the mRNA-templated synthesis of designer peptides.
唑类是五元杂环,常存在于肽类天然产物和合成肽类似物的骨架中。在这里,我们报告了一种涉及核糖体特异性掺入溴乙烯基甘氨酸衍生物到新生肽链中,并通过化学选择性转化为独特唑结构的含唑肽的核糖体合成方法。该化学选择性转化是通过溴乙烯基的去溴化和在相当温和的条件下在水介质中的异构化来实现的。该方法使我们能够在具有线性和大环支架的肽链的指定位置上安装异唑、噁唑和噻唑等外来唑基团,从而扩展了在 mRNA 模板合成设计肽中构建块的种类。