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Biochimica Et Biophysica Acta|June 19, 1998
Methylamine dehydrogenase is a light-dependent oxidaseZ Zhu, V L DavidsonBiochemistry|April 14, 1999
Identification of a new reaction intermediate in the oxidation of methylamine dehydrogenase by amicyaninZ Zhu, V L DavidsonThe Biochemical Journal|February 14, 1998
Kinetic and chemical mechanisms for the effects of univalent cations on the spectral properties of aromatic amine dehydrogenaseZ Zhu, V L DavidsonThe Journal of Biological Chemistry|June 11, 1998
Redox properties of tryptophan tryptophylquinone enzymes. Correlation with structure and reactivityZ Zhu, V L DavidsonBiochemistry|September 14, 2000
Conversion of methylamine dehydrogenase to a long-chain amine dehydrogenase by mutagenesis of a single residueZ Zhu, D Sun, V L DavidsonJournal of Bacteriology|October 9, 1999
Localization of periplasmic redox proteins of Alcaligenes faecalis by a modified general method for fractionating gram-negative bacteriaZ Zhu, D Sun, V L DavidsonBiochemistry|June 4, 1998
Site-directed mutagenesis of Phe 97 to Glu in amicyanin alters the electronic coupling for interprotein electron transfer from quinol methylamine dehydrogenaseV L Davidson, L H Jones, Z ZhuAnalytical Chemistry|June 14, 2000
Amperometric detection of histamine with a methylamine dehydrogenase polypyrrole-based sensorK Zeng, H Tachikawa, Z Zhu, et al.Biochemistry|July 29, 2000
Molecular basis for complex formation between methylamine dehydrogenase and amicyanin revealed by inverse mutagenesis of an interprotein salt bridgeZ Zhu, L H Jones, M E Graichen, et al.Biochimica Et Biophysica Acta|February 29, 2000
Tyr(30) of amicyanin is not critical for electron transfer to cytochrome c-551i: implications for predicting electron transfer pathwaysV L Davidson, L H Jones, M E Graichen, et al.Pageof 145