1. Academic Validation
  2. Glycosylated cyclophellitol-derived activity-based probes and inhibitors for cellulases

Glycosylated cyclophellitol-derived activity-based probes and inhibitors for cellulases

  • RSC Chem Biol. 2020 Jul 28;1(3):148-155. doi: 10.1039/d0cb00045k.
Casper de Boer 1 Nicholas G S McGregor 2 Evert Peterse 1 Sybrin P Schröder 1 Bogdan I Florea 1 Jianbing Jiang 1 Jos Reijngoud 3 Arthur F J Ram 3 Gilles P van Wezel 3 Gijsbert A van der Marel 1 Jeroen D C Codée 1 Herman S Overkleeft 1 Gideon J Davies 2
Affiliations

Affiliations

  • 1 Leiden Institute of Chemistry, Leiden University Einsteinweg 55 2300 RA Leiden The Netherlands h.s.overkleeft@chem.leidenuniv.nl.
  • 2 York Structural Biology Laboratory, Department of Chemistry, The University of York Heslington York YO10 5DD UK Gideon.davies@york.ac.uk.
  • 3 Institute of Biology Leiden, Leiden University Sylviusweg 72 2333 BE Leiden The Netherlands.
Abstract

Cellulases and related β-1,4-glucanases are essential components of lignocellulose-degrading Enzyme mixtures. The detection of β-1,4-glucanase activity typically relies on monitoring the breakdown of purified lignocellulose-derived substrates or synthetic chromogenic substrates, limiting the activities which can be detected and complicating the tracing of activity back to specific components within complex Enzyme mixtures. As a tool for the rapid detection and identification of β-1,4-glucanases, a series of glycosylated cyclophellitol inhibitors mimicking β-1,4-glucan oligosaccharides have been synthesised. These compounds are highly efficient inhibitors of HiCel7B, a well-known GH7 endo-β-1,4-glucanase. An elaborated activity-based probe facilitated the direct detection and identification of β-1,4-glucanases within a complex Fungal secretome without any detectable cross-reactivity with β-d-glucosidases. These probes and inhibitors add valuable new capacity to the growing toolbox of cyclophellitol-derived probes for the activity-based profiling of biomass-degrading Enzymes.

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