State Key Laboratory of Pharmaceutical Biotechnology, Department of Neurology, Nanjing Drum Tower Hospital, School of Life Sciences, Chemistry and Biomedicine Innovation Center (ChemBIC), Nanjing University, Nanjing 210023, China.
J Am Chem Soc. 2023 Dec 20;145(50):27325-27335. doi: 10.1021/jacs.3c07416. Epub 2023 Dec 9.
Cyclization of linear peptides is an effective strategy to convert flexible molecules into rigid compounds, which is of great significance for enhancing the peptide stability and bioactivity. Despite significant advances in the past few decades, Nature and chemists' ability to macrocyclize linear peptides is still quite limited. P450 enzymes have been reported to catalyze macrocyclization of peptides through cross-linkers between aromatic amino acids with only three examples. Herein, we developed an efficient workflow for the identification of P450-modified RiPPs in bacterial genomes, resulting in the discovery of a large number of P450-modified RiPP gene clusters. Combined with subsequent expression and structural characterization of the products, we have identified 11 novel P450-modified RiPPs with different cross-linking patterns from four distinct classes. Our results greatly expand the structural diversity of P450-modified RiPPs and provide new insights and enzymatic tools for the production of cyclic peptides.
线性肽的环化是将柔性分子转化为刚性化合物的有效策略,对于提高肽的稳定性和生物活性具有重要意义。尽管在过去几十年中取得了重大进展,但自然界和化学家使线性肽大环化的能力仍然相当有限。已有报道称 P450 酶可以通过芳香族氨基酸之间的交联剂来催化肽的环化,仅有三个例子。在此,我们开发了一种有效的工作流程,用于鉴定细菌基因组中的 P450 修饰 RiPP,从而发现了大量的 P450 修饰 RiPP 基因簇。结合后续对产物的表达和结构表征,我们从四个不同的类别中鉴定了 11 种具有不同交联模式的新型 P450 修饰 RiPP。我们的结果大大扩展了 P450 修饰 RiPP 的结构多样性,并为环肽的生产提供了新的见解和酶学工具。