Authors
Christian H Kjaergaard, Munzarin F Qayyum, Shaun D Wong, Feng Xu, Glyn R Hemsworth, Daniel J Walton, Nigel A Young, Gideon J Davies, Paul H Walton, Katja Salomon Johansen, Keith O Hodgson, Britt Hedman, Edward I Solomon
Publication date
2014/6/17
Journal
Proceedings of the National Academy of Sciences
Volume
111
Issue
24
Pages
8797-8802
Publisher
National Academy of Sciences
Description
Strategies for O2 activation by copper enzymes were recently expanded to include mononuclear Cu sites, with the discovery of the copper-dependent polysaccharide monooxygenases, also classified as auxiliary-activity enzymes 9–11 (AA9-11). These enzymes are finding considerable use in industrial biofuel production. Crystal structures of polysaccharide monooxygenases have emerged, but experimental studies are yet to determine the solution structure of the Cu site and how this relates to reactivity. From X-ray absorption near edge structure and extended X-ray absorption fine structure spectroscopies, we observed a change from four-coordinate Cu(II) to three-coordinate Cu(I) of the active site in solution, where three protein-derived nitrogen ligands coordinate the Cu in both redox states, and a labile hydroxide ligand is lost upon reduction. The spectroscopic data allowed for density functional theory …
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