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Title | Structure of the polyisoprenyl-phosphate glycosyltransferase GtrB and insights into the mechanism of catalysis. |
Publication Type | Journal Article |
Year of Publication | 2016 |
Authors | Ardiccioni, C, Clarke, OB, Tomasek, D, Issa, HA, von Alpen, DC, Pond, HL, Banerjee, S, Rajashankar, KR, Liu, Q, Guan, Z, Li, C, Kloss, B, Bruni, R, Kloppmann, E, Rost, B, M Manzini, C, Shapiro, L, Mancia, F |
Journal | Nat Commun |
Volume | 7 |
Pagination | 10175 |
Date Published | 2016 |
ISSN | 2041-1723 |
Abstract | The attachment of a sugar to a hydrophobic polyisoprenyl carrier is the first step for all extracellular glycosylation processes. The enzymes that perform these reactions, polyisoprenyl-glycosyltransferases (PI-GTs) include dolichol phosphate mannose synthase (DPMS), which generates the mannose donor for glycosylation in the endoplasmic reticulum. Here we report the 3.0Å resolution crystal structure of GtrB, a glucose-specific PI-GT from Synechocystis, showing a tetramer in which each protomer contributes two helices to a membrane-spanning bundle. The active site is 15 Å from the membrane, raising the question of how water-soluble and membrane-embedded substrates are brought into apposition for catalysis. A conserved juxtamembrane domain harbours disease mutations, which compromised activity in GtrB in vitro and in human DPM1 tested in zebrafish. We hypothesize a role of this domain in shielding the polyisoprenyl-phosphate for transport to the active site. Our results reveal the basis of PI-GT function, and provide a potential molecular explanation for DPM1-related disease. |
DOI | 10.1038/ncomms10175 |
Alternate Journal | Nat Commun |
PubMed ID | 26729507 |
Grant List | P41 RR015301 / RR / NCRR NIH HHS / United States R01 GM111980 / GM / NIGMS NIH HHS / United States U54 GM095315 / GM / NIGMS NIH HHS / United States |