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Dalton Transactions (Cambridge, England : 2003)|July 24, 2008
O2 reduction to H2O by the multicopper oxidasesEdward I Solomon, Anthony J Augustine, Jungjoo YoonCombinatorial Chemistry & High Throughput Screening|June 8, 2002
Improving metal ion specificity during in vitro selection of catalytic DNAPeter J Bruesehoff, Jing Li, Anthony J Augustine, et al.The Journal of Biological Chemistry|January 16, 2007
Structure-function analysis of the cuprous oxidase activity in Fet3p from Saccharomyces cerevisiaeChristopher S Stoj, Anthony J Augustine, Edward I Solomon, et al.Biochemistry|October 18, 2006
Structural basis of the ferrous iron specificity of the yeast ferroxidase, Fet3pChristopher S Stoj, Anthony J Augustine, Lynn Zeigler, et al.Journal of the American Chemical Society|October 9, 2007
Spectroscopic and kinetic studies of perturbed trinuclear copper clusters: the role of protons in reductive cleavage of the O-O bond in the multicopper oxidase Fet3pAnthony J Augustine, Liliana Quintanar, Christopher S Stoj, et al.Accounts of Chemical Research|May 3, 2007
O2 and N2O activation by Bi-, Tri-, and tetranuclear Cu clusters in biologyEdward I Solomon, Ritimukta Sarangi, Julia S Woertink, et al.Journal of the American Chemical Society|April 10, 2010
Systematic perturbation of the trinuclear copper cluster in the multicopper oxidases: the role of active site asymmetry in its reduction of O2 to H2OAnthony J Augustine, Christian Kjaergaard, Munzarin Qayyum, et al.Biochemistry|May 2, 2013
Modified reactivity toward O2 in first shell variants of Fet3p: geometric and electronic structure requirements for a functioning trinuclear copper clusterChristian H Kjaergaard, Munzarin F Qayyum, Anthony J Augustine, et al.Biochemistry|January 17, 2008
Spectroscopic studies of perturbed T1 Cu sites in the multicopper oxidases Saccharomyces cerevisiae Fet3p and Rhus vernicifera laccase: allosteric coupling between the T1 and trinuclear Cu sitesAnthony J Augustine, Mads Emil Kragh, Ritimukta Sarangi, et al.Pageof 1