Source data for "A glycan foldamer that uses carbohydrate-aromatic interactions to perform catalysis"

DOI

In nature, the ability to catalyse reactions is primarily associated with proteins and ribozymes. Inspired by these systems, peptide-based catalysts have been designed to accelerate chemical reactions and/or ensure regio- and stereoselective transformations. We wondered whether other biomolecules (such as glycans) could be designed to perform catalytic functions, expanding the portfolio of synthetic functional oligomers. Here we report a glycan foldamer inspired by the natural Sialyl Lewis X antigen that acts as catalyst in a chemical reaction. This glycan-based catalyst benefits from structural rigidity and modular adaptability, incorporating a substrate-recognition motif alongside a catalytic active site. Leveraging the inherent ability of carbohydrates to engage in CH–π interactions with aromatic substrates, we demonstrate the recruitment and functionalization of a tryptophan via a Pictet–Spengler transformation. Our modular glycan catalyst accelerates the reaction kinetics, enabling the modification of tryptophan-containing peptides in aqueous environments. Our findings pave the way for the development of glycan-based catalysts and suggest the possibility of catalytic capabilities of glycans in biological contexts.

Identifier
DOI https://doi.org/10.17617/3.QMXNSH
Metadata Access https://edmond.mpg.de/api/datasets/export?exporter=dataverse_json&persistentId=doi:10.17617/3.QMXNSH
Provenance
Creator Liu, Kaimeng; Delbianco, Martina
Publisher Edmond
Publication Year 2024
OpenAccess true
Contact MARTINA.DELBIANCO(at)MPIKG.MPG.DE; biblio(at)mpikg.mpg.de
Representation
Language English
Resource Type Dataset
Version 3
Discipline Other