Specificity of Processing alpha-Glucosidase I Is Guided by the Substrate Conformation CRYSTALLOGRAPHIC AND IN SILICO STUDIES


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Authors: Barker, MK; Rose, DR
Year: 2013
Journal: J. Biol. Chem. 288: 13563-13574   Article Link (DOI)  PubMed
Title: Specificity of Processing alpha-Glucosidase I Is Guided by the Substrate Conformation CRYSTALLOGRAPHIC AND IN SILICO STUDIES
Abstract: Processing alpha-glucosidase I (GluI) is a key member of the eukaryotic N-glycosylation processing pathway, selectively catalyzing the first glycoprotein trimming step in the endoplasmic reticulum. Inhibition of GluI activity impacts the infectivity of enveloped viruses; however, despite interest in this protein from a structural, enzymatic, and therapeutic standpoint, little is known about its structure and enzymatic mechanism in catalysis of the unique glycan substrate Glc(3)Man(9)GlcNAc(2). The first structural model of eukaryotic GluI is here presented at 2-angstrom resolution. Two catalytic residues are proposed, mutations of which result in catalytically inactive, properly folded protein. Using Autodocking methods with the known substrate and inhibitors as ligands, including a novel inhibitor characterized in this work, the active site of GluI was mapped. From these results, a model of substrate binding has been formulated, which is most likely conserved in mammalian GluI.
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