Chemoenzymatic Late-Stage Modifications Enable Downstream Click-Mediated Fluorescent Tagging of Peptides

Angew Chem Int Ed Engl. 2023 Apr 11;62(16):e202215979. doi: 10.1002/anie.202215979. Epub 2023 Mar 10.

Abstract

Aromatic prenyltransferases from cyanobactin biosynthetic pathways catalyse the chemoselective and regioselective intramolecular transfer of prenyl/geranyl groups from isoprene donors to an electron-rich position in these macrocyclic and linear peptides. These enzymes often demonstrate relaxed substrate specificity and are considered useful biocatalysts for structural diversification of peptides. Herein, we assess the isoprene donor specificity of the N1-tryptophan prenyltransferase AcyF from the anacyclamide A8P pathway using a library of 22 synthetic alkyl pyrophosphate analogues, of which many display reactive groups that are amenable to additional functionalization. We further used AcyF to introduce a reactive moiety into a tryptophan-containing cyclic peptide and subsequently used click chemistry to fluorescently label the enzymatically modified peptide. This chemoenzymatic strategy allows late-stage modification of peptides and is useful for many applications.

Keywords: Cyanobactins; Cyclic Peptides; Late-Stage Modification; Prenyltransferases; RiPPs.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Butadienes
  • Dimethylallyltranstransferase* / metabolism
  • Hemiterpenes
  • Peptides
  • Peptides, Cyclic / chemistry
  • Substrate Specificity
  • Tryptophan* / chemistry

Substances

  • isoprene
  • Tryptophan
  • Peptides
  • Peptides, Cyclic
  • Butadienes
  • Hemiterpenes
  • Dimethylallyltranstransferase