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O-GlcNAc transferase invokes nucleotide sugar pyrophosphate participation in catalysis
Authors
AJ Clarke
Alexander W Schüttelkopf
+39 more
Andrew T Ferenbach
AW Schüttelkopf
BL Cantarel
C Martinez-Fleites
CI Chen
Daan M F van Aalten
David A Robinson
David E Blair
DC Love
DJ Hosfield
DJ Vocadlo
E Lira-Navarrete
GW Hart
GW Hart
H Gold
I Meynial
Iva Navratilova
J Jiang
LL Lairson
Marianne Schimpl
MB Lazarus
Megan A Macnaughtan
MO Ziegler
MS Macauley
Osama Albarbarawi
P Emsley
PC Cheung
R Fujiki
RF Sala
S Pathak
SH Conner
SP Iyer
SS Lee
TK Harris
TM Gloster
Tonia Aristotelous
Vladimir S Borodkin
Xiaowei Zheng
Z Wang
Publication date
1 January 2012
Publisher
LSU Digital Commons
Doi
View
on
PubMed
Abstract
Protein O-GlcNAcylation is an essential post-translational modification on hundreds of intracellular proteins in metazoa, catalyzed by O-linked β-N-acetylglucosamine (O-GlcNAc) transferase (OGT) using unknown mechanisms of transfer and substrate recognition. Through crystallographic snapshots and mechanism-inspired chemical probes, we define how human OGT recognizes the sugar donor and acceptor peptide and uses a new catalytic mechanism of glycosyl transfer, involving the sugar donor α-phosphate as the catalytic base as well as an essential lysine. This mechanism seems to be a unique evolutionary solution to the spatial constraints imposed by a bulky protein acceptor substrate and explains the unexpected specificity of a recently reported metabolic OGT inhibitor. © 2012 Nature America, Inc. All rights reserved
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