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Journal article

A Single Point Mutation Converts GH84 O-GlcNAc Hydrolases into Phosphorylases: Experimental and Theoretical Evidence

From

Department of Biotechnology and Biomedicine, Technical University of Denmark1

Section for Protein Chemistry and Enzyme Technology, Department of Biotechnology and Biomedicine, Technical University of Denmark2

Enzyme and Protein Chemistry, Section for Protein Chemistry and Enzyme Technology, Department of Biotechnology and Biomedicine, Technical University of Denmark3

Universitat de Barcelona4

Catalan Institution for Research and Advanced Studies5

Nantes Université6

Glycoside hydrolases and phosphorylases are two major classes of enzymes responsible for the cleavage of glycosidic bonds. Here we show that two GH84 O-GlcNAcase enzymes can be converted to efficient phosphorylases by a single point mutation. Noteworthy, the mutated enzymes are over 10-fold more active than naturally occurring glucosaminide phosphorylases.

We rationalize this novel transformation using molecular dynamics and QM/MM metadynamics methods, showing that the mutation changes the electrostatic potential at the active site and reduces the energy barrier for phosphorolysis by 10 kcal·mol-1. In addition, the simulations unambiguously reveal the nature of the intermediate as a glucose oxazolinium ion, clarifying the debate on the nature of such a reaction intermediate in glycoside hydrolases operating via substrate-assisted catalysis.

Language: English
Publisher: American Chemical Society
Year: 2020
Pages: 2120-2124
ISSN: 15205126 and 00027863
Types: Journal article
DOI: 10.1021/jacs.9b09655
ORCIDs: Teze, David , 0000-0002-5788-2847 , Svensson, Birte and 0000-0003-1477-5010

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