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ACS Central Science|July 11, 2017
Correction to "Detection of Active Mammalian GH31 α-Glucosidases in Health and Disease Using In-Class, Broad-Spectrum Activity-Based Probes"Jianbing Jiang, Chi-Lin Kuo, Liang Wu, et al.ACS Central Science|June 10, 2016
Detection of Active Mammalian GH31 α-Glucosidases in Health and Disease Using In-Class, Broad-Spectrum Activity-Based ProbesJianbing Jiang, Chi-Lin Kuo, Liang Wu, et al.RSC Chemical Biology|January 3, 2022
Correction: Glycosylated cyclophellitol-derived activity-based probes and inhibitors for cellulasesCasper de Boer, Nicholas G S McGregor, Evert Peterse, et al.RSC Chemical Biology|August 30, 2021
Glycosylated cyclophellitol-derived activity-based probes and inhibitors for cellulasesCasper de Boer, Nicholas G S McGregor, Evert Peterse, et al.Nature Chemical Biology|June 6, 2017
Activity-based probes for functional interrogation of retaining β-glucuronidasesLiang Wu, Jianbing Jiang, Yi Jin, et al.Chemical Communications (Cambridge, England)|November 9, 2017
Towards broad spectrum activity-based glycosidase probes: synthesis and evaluation of deoxygenated cyclophellitol aziridinesSybrin P Schröder, Jasper W van de Sande, Wouter W Kallemeijn, et al.Chemical Science|November 17, 2017
In vitro and in vivo comparative and competitive activity-based protein profiling of GH29 α-l-fucosidasesJianbing Jiang, Wouter W Kallemeijn, Daniel W Wright, et al.Angewandte Chemie (International Ed. in English)|November 10, 2012
Novel activity-based probes for broad-spectrum profiling of retaining β-exoglucosidases in situ and in vivoWouter W Kallemeijn, Kah-Yee Li, Martin D Witte, et al.Pageof 5