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Identification Of Residues That Confer Sugar Selectivity To Udp-Glycosyltransferase 3A (Ugt3A) Enzymes.

J Biol Chem.. 2012-07;  287(29):24122 - 24130
Robyn Meech, Anne Rogers, Lizhe Zhuang, Benjamin C. Lewis, John O. Miners, and Peter I. Mackenzie. Department of Clinical Pharmacology, Flinders University School of Medicine and Flinders Medical Centre, Bedford Park, South Australia 5042, Australia.
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Abstract

Recent studies in this laboratory characterized the UGT3A family enzymes, UGT3A1 and UGT3A2, and showed that neither uses the traditional UDP-glycosyltransferase UGT co-substrate UDP-glucuronic acid. Rather, UGT3A1 uses GlcNAc as preferred sugar donor and UGT3A2 uses UDP-Glc. The enzymatic characterization of UGT3A mutants, structural modeling, and multispecies gene analysis have now been employed to identify a residue within the active site of these enzymes that confers their unique sugar preferences. An asparagine (Asn-391) in the UGT signature sequence of UGT3A1 is necessary for utilization of UDP-GlcNAc. Conversely, a phenylalanine (Phe-391) in UGT3A2 favors UDP-Glc use. Mutation of Asn-391 to Phe in UGT3A1... More

Keywords

Drug Metabolism; Glycosyltransferases; Homology Modeling; Protein Evolution; Site-directed Mutagenesis; UDP-glucuronosyltransferase