Christopher S. Stoj, Ph.D.

Affiliations: 
2006 State University of New York, Buffalo, Buffalo, NY, United States 
Area:
Biochemistry
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"Christopher Stoj"
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Daniel J. Kosman grad student 2006 SUNY Buffalo
 (Mutational analysis of substrate interactions and oxygen reduction of the multicopper oxidase Fet3p from Saccharomyces cerevisiae.)
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Publications

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Augustine AJ, Kragh ME, Sarangi R, et al. (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 sites. Biochemistry. 47: 2036-45
Augustine AJ, Quintanar L, Stoj CS, et al. (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 Fet3p. Journal of the American Chemical Society. 129: 13118-26
Quintanar L, Stoj C, Taylor AB, et al. (2007) Shall we dance? How a multicopper oxidase chooses its electron transfer partner. Accounts of Chemical Research. 40: 445-52
Stoj CS, Augustine AJ, Solomon EI, et al. (2007) Structure-function analysis of the cuprous oxidase activity in Fet3p from Saccharomyces cerevisiae. The Journal of Biological Chemistry. 282: 7862-8
Stoj CS, Augustine AJ, Zeigler L, et al. (2006) Structural basis of the ferrous iron specificity of the yeast ferroxidase, Fet3p. Biochemistry. 45: 12741-9
Kwok EY, Stoj CS, Severance S, et al. (2006) An engineered bifunctional high affinity iron uptake protein in the yeast plasma membrane. Journal of Inorganic Biochemistry. 100: 1053-60
Taylor AB, Stoj CS, Ziegler L, et al. (2005) The copper-iron connection in biology: structure of the metallo-oxidase Fet3p. Proceedings of the National Academy of Sciences of the United States of America. 102: 15459-64
Quintanar L, Stoj C, Wang TP, et al. (2005) Role of aspartate 94 in the decay of the peroxide intermediate in the multicopper oxidase Fet3p. Biochemistry. 44: 6081-91
Stoj C, Kosman DJ. (2003) Cuprous oxidase activity of yeast Fet3p and human ceruloplasmin: implication for function. Febs Letters. 554: 422-6
Shi X, Stoj C, Romeo A, et al. (2003) Fre1p Cu2+ reduction and Fet3p Cu1+ oxidation modulate copper toxicity in Saccharomyces cerevisiae. The Journal of Biological Chemistry. 278: 50309-15
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