Structural dissection and high-throughput screening of mannosylglycerate synthase

被引:0
作者
James Flint
Edward Taylor
Min Yang
David N Bolam
Louise E Tailford
Carlos Martinez-Fleites
Eleanor J Dodson
Benjamin G Davis
Harry J Gilbert
Gideon J Davies
机构
[1] Institute for Cell and Molecular Biosciences,Department of Chemistry
[2] University of Newcastle upon Tyne,Department of Chemistry
[3] The Medical School,undefined
[4] York Structural Biology Laboratory,undefined
[5] University of York,undefined
[6] The University of Oxford,undefined
来源
Nature Structural & Molecular Biology | 2005年 / 12卷
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摘要
The enzymatic transfer of activated mannose yields mannosides in glycoconjugates and oligo- and polysaccharides. Yet, despite its biological necessity, the mechanism by which glycosyltransferases recognize mannose and catalyze its transfer to acceptor molecules is poorly understood. Here, we report broad high-throughput screening and kinetic analyses of both natural and synthetic substrates of Rhodothermus marinus mannosylglycerate synthase (MGS), which catalyzes the formation of the stress protectant 2-O-α-D-mannosyl glycerate. The sequence of MGS indicates that it is at the cusp of inverting and retaining transferases. The structures of apo MGS and complexes with donor and acceptor molecules, including GDP-mannose, combined with mutagenesis of the binding and catalytic sites, unveil the mannosyl transfer center. Nucleotide specificity is as important in GDP-D-mannose recognition as the nature of the donor sugar.
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页码:608 / 614
页数:6
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