Institute for Molecular Bio Science, Goethe University Frankfurt, Max-von-Laue Strasse 9, 60438, Frankfurt am Main, Germany.
LOEWE Center for Translational Biodiversity Genomics (TBG), Senckenberganlage 25, 60325, Frankfurt am Main, Germany.
Angew Chem Int Ed Engl. 2022 Oct 10;61(41):e202208361. doi: 10.1002/anie.202208361. Epub 2022 Sep 7.
Biomacromolecules are known to feature complex three-dimensional shapes that are essential for their function. Among natural products, ambiguous molecular shapes are a rare phenomenon. The hexapeptide tryptorubin A can adopt one of two unusual atropisomeric configurations. Initially hypothesized to be a non-ribosomal peptide, we show that tryptorubin A is the first characterized member of a new family of ribosomally synthesized and posttranslationally modified peptides (RiPPs) that we named atropopeptides. The sole modifying enzyme encoded in the gene cluster, a cytochrome P450 monooxygenase, is responsible for the atropospecific formation of one carbon-carbon and two carbon-nitrogen bonds. The characterization of two additional atropopeptide biosynthetic pathways revealed a two-step maturation process. Atropopeptides promote pro-angiogenic cell functions as indicated by an increase in endothelial cell proliferation and undirected migration. Our study expands the biochemical space of RiPP-modifying enzymes and paves the way towards the chemoenzymatic utilization of atropopeptide-modifying P450s.
生物大分子以其对功能至关重要的复杂三维形状为特征。在天然产物中,模棱两可的分子形状是一种罕见的现象。六肽色氨霉素 A 可以采用两种不寻常的对映异构体构型之一。最初被假设为一种非核糖体肽,我们表明色氨霉素 A 是第一个被表征的新型核糖体合成和翻译后修饰肽 (RiPP) 家族成员,我们将其命名为对映肽。基因簇中编码的唯一修饰酶,细胞色素 P450 单加氧酶,负责对映特异性形成一个碳-碳键和两个碳-氮键。对另外两种对映肽生物合成途径的表征揭示了两步成熟过程。对映肽促进血管生成前体细胞的功能,表现为内皮细胞增殖和无定向迁移增加。我们的研究扩展了 RiPP 修饰酶的生化空间,并为化学酶法利用对映肽修饰 P450 铺平了道路。