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Inorganic Chemistry|February 28, 2017
Tolyporphin Macrocycles from the Cyanobacterium Tolypothrix nodosa Selectively Bind Copper and Silver and Reverse Multidrug ResistanceMichèle R Prinsep, Trevor G Appleton, Graeme R Hanson, et al.Biochemistry|December 27, 2002
Site-directed mutagenesis of dimethyl sulfoxide reductase from Rhodobacter capsulatus: characterization of a Y114 --> F mutantJustin P Ridge, Kondo-Francois Aguey-Zinsou, Paul V Bernhardt, et al.Proceedings of the National Academy of Sciences of the United States of America|May 23, 2012
Role of semiconductivity and ion transport in the electrical conduction of melaninAlbertus B Mostert, Benjamin J Powell, Francis L Pratt, et al.Chemistry (Weinheim an Der Bergstrasse, Germany)|January 24, 2012
Cu(II) coordination chemistry of patellamide derivatives: possible biological functions of cyclic pseudopeptidesPeter Comba, Nina Dovalil, Lawrence R Gahan, et al.Biochimica Et Biophysica Acta|October 18, 2015
Identification of a neuropeptide precursor protein that gives rise to a "cocktail" of peptides that bind Cu(II) and generate metal-linked dimersChristopher E Jones, Meet Zandawala, Dean C Semmens, et al.Chemistry (Weinheim an Der Bergstrasse, Germany)|April 3, 2008
Copper(II) coordination chemistry of westiellamide and its imidazole, oxazole, and thiazole analoguesPeter Comba, Lawrence R Gahan, Gebhard Haberhauer, et al.Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|January 12, 2008
Structural and spectroscopic studies of a model for catechol oxidaseSarah J Smith, Christopher J Noble, Randahl C Palmer, et al.Biochemistry|August 9, 2006
Kinetic and structural evidence for the importance of Tyr236 for the integrity of the Mo active site in a bacterial sulfite dehydrogenaseUlrike Kappler, Susan Bailey, Changjian Feng, et al.Journal of Materials Chemistry. B|August 12, 2020
Engineering proton conductivity in melanin using metal dopingA Bernardus Mostert, Shermiyah B Rienecker, Margarita Sheliakina, et al.Journal of the American Chemical Society|August 6, 2009
Structural flexibility enhances the reactivity of the bioremediator glycerophosphodiesterase by fine-tuning its mechanism of hydrolysisKieran S Hadler, Natasa Mitić, Fernanda Ely, et al.Pageof 8