Abstract
Glycosyltransferases are ubiquitous enzymes that catalyze the assembly of glycoconjugates throughout all kingdoms of nature. A long-standing problem is the rational design of probes that can be used to manipulate glycosyltransferase activity in cells and tissues. Here we describe the rational design and synthesis of a nucleotide sugar analog that inhibits, with high potency both in vitro and in cells, the human glycosyltransferase responsible for the reversible post-translational modification of nucleocytoplasmic proteins with O-linked N-acetylglucosamine residues (O-GlcNAc). We show that the enzymes of the hexosamine biosynthetic pathway can transform, both in vitro and in cells, a synthetic carbohydrate precursor into the nucleotide sugar analog. Treatment of cells with the precursor lowers O-GlcNAc in a targeted manner with a single-digit micromolar EC(50). This approach to inhibition of glycosyltransferases should be applicable to other members of this superfamily of enzymes and enable their manipulation in a biological setting.
Publication types
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Research Support, Non-U.S. Gov't
MeSH terms
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Acetylglucosaminidase / antagonists & inhibitors*
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Acetylglucosaminidase / metabolism
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Biosynthetic Pathways*
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Cytoplasm / chemistry
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Cytoplasm / drug effects*
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Cytoplasm / metabolism
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Dose-Response Relationship, Drug
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Enzyme Inhibitors / chemical synthesis
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Enzyme Inhibitors / chemistry
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Enzyme Inhibitors / pharmacology*
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Humans
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Protein Processing, Post-Translational / drug effects*
Substances
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Enzyme Inhibitors
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Acetylglucosaminidase
Associated data
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PubChem-Substance/103910756
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PubChem-Substance/103910757
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PubChem-Substance/103910758
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PubChem-Substance/103910759
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PubChem-Substance/103910760
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PubChem-Substance/103910761
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PubChem-Substance/103910762
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PubChem-Substance/103910763
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PubChem-Substance/103910764
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PubChem-Substance/103910765
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PubChem-Substance/103910766
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PubChem-Substance/103910767
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PubChem-Substance/103910768
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PubChem-Substance/103910769
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PubChem-Substance/103910770
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PubChem-Substance/103910771
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PubChem-Substance/103910772
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PubChem-Substance/103910773
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PubChem-Substance/103910774
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PubChem-Substance/103910775
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PubChem-Substance/103910776
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PubChem-Substance/103910777
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PubChem-Substance/103910778
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PubChem-Substance/103910779
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PubChem-Substance/103910780
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PubChem-Substance/103910781
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PubChem-Substance/103910782
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PubChem-Substance/103910783
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PubChem-Substance/103910784