Related Experiment Video
Updated: Aug 24, 2025

Determination of Protein-ligand Interactions Using Differential Scanning Fluorimetry
Published on: September 13, 2014
The retaining β-Kdo glycosyltransferase WbbB uses a double-displacement mechanism with an intermediate adduct
Taylor J B Forrester1, Olga G Ovchinnikova1, Zhixiong Li2
1Department of Molecular and Cellular Biology, University of Guelph, 50 Stone Road E., Guelph, ON, N1G 2W1, Canada.
Abstract:
WbbB, a lipopolysaccharide O-antigen synthesis enzyme from Raoultella terrigena, contains an N-terminal glycosyltransferase domain with a highly modified architecture that adds a terminal β-Kdo (3-deoxy-D-manno-oct-2-ulosonic acid) residue to the O-antigen saccharide, with retention of stereochemistry. We show, using mass spectrometry, that WbbB forms a covalent adduct between the catalytic nucleophile, Asp232, and Kdo. We also determine X-ray structures for the CMP-β-Kdo donor complex, for Kdo-adducts with D232N and D232C WbbB variants, for a synthetic disaccharide acceptor complex, and for a ternary complex with both a Kdo-adduct and the acceptor. Together, these structures show that the enzyme-linked Asp232-Kdo adduct rotates to reposition the Kdo into a second sub-site, which then transfers Kdo to the acceptor. Retaining glycosyltransferases were thought to use only the front-side SNi substitution mechanism; here we show that retaining glycosyltransferases can also potentially use double-displacement mechanisms, but incorporating an additional catalytic subsite requires rearrangement of the protein's architecture.
More Related Videos
Related Concept Videos
Reactions of Aldehydes and Ketones: Baeyer–Villiger Oxidation
The carbonyl center is...
Aldehydes and Ketones to Alkanes: Wolff–Kishner Reduction
Crossed Aldol Reaction Using Weak Bases
Glycolysis: Preparatory Phase
Base-Catalyzed Aldol Addition Reaction
Oligosaccharide Assembly
Multiple sugar molecules that may or may...

