Fluorogenic Coupled Assays Reveal Catalytic Properties, Inhibition Constants and Cellular Location of Mucin‐Active Carbohydrate Sulfatases

C Charles W. E. Tomlinson (Department of Biology, University of York) M Madouc D. Bergers (Department of Bio‐organic synthesis Leiden Institute of Chemistry University of Leiden Leiden the Netherlands) D David N. Bolam (Biosciences Institute, Faculty of Medical Sciences, Newcastle University, Medical School) A Ana S. Luis A Alan Cartmell Z Zachary Armstrong (Department of Bio‐organic synthesis Leiden Institute of Chemistry University of Leiden Leiden the Netherlands)

Abstract

ABSTRACT Sulfated glycans play a central role in human health and influence cell signaling, cancer progression, pathogen invasion, and host‐microbiome interactions. Metabolism of these glycans requires a specialized class of enzymes termed carbohydrate sulfatases. These enzymes are particularly important in the human gut where sulfated colonic mucin is produced and subsequently degraded by colonic bacteria. Despite the biological importance of carbohydrate sulfatases, there is currently a lack of chemical tools to study their activity, substrate selectivity, inhibition, and the discovery of novel enzymes. To address this, we have synthesized new chemical tools to rapidly and quantitatively determine the activity and selectivity of carbohydrate sulfatases in plate‐based coupled assays. We have synthesized 3‐ O ‐sulfated fluorogenic glycosides using efficient synthetic routes and combined these fluorogenic substrates with a glycosidase that selectively cleaves unsulfated glycosides, allowing sensitive detection of sulfatase activity on both purified protein and cell lysate from the S1_20 subfamily sulfatases. Furthermore, we show that the assay enables differentiation and quantification of substrate specificity, identification of sulfatase inhibitors, and determination of sulfatase (sub‐)cellular location for two S1_20 subfamily sulfatases. Collectively, we anticipate that these tools will further our understanding of the interplay between carbohydrate sulfatases, sulfated glycans, and human health.

Article Details

Volume / Issue Vol. 65, Issue 30
Published July 20, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

C

Charles W. E. Tomlinson

Department of Biology, University of York

M

Madouc D. Bergers

Department of Bio‐organic synthesis Leiden Institute of Chemistry University of Leiden Leiden the Netherlands

D

David N. Bolam

Biosciences Institute, Faculty of Medical Sciences, Newcastle University, Medical School

A

Ana S. Luis

A

Alan Cartmell

Z

Zachary Armstrong

Department of Bio‐organic synthesis Leiden Institute of Chemistry University of Leiden Leiden the Netherlands