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Analytical Chemistry|April 2, 2002
Improved sensitivity of a histamine sensor using an engineered methylamine dehydrogenaseLili Bao, Dapeng Sun, Hiroyasu Tachikawa, et al.FEBS Letters|June 14, 2002
Inter-subunit cross-linking of methylamine dehydrogenase by cyclopropylamine requires residue alphaPhe55Dapeng Sun, Victor L DavidsonJournal of the American Chemical Society|March 13, 2003
Evidence for substrate activation of electron transfer from methylamine dehydrogenase to amicyaninVictor L Davidson, Dapeng SunBiochemistry|February 13, 2003
Effects of engineering uphill electron transfer into the methylamine dehydrogenase-amicyanin-cytochrome c-551i complexDapeng Sun, Victor L DavidsonBiochemistry|January 18, 2006
Evidence for redox cooperativity between c-type hemes of MauG which is likely coupled to oxygen activation during tryptophan tryptophylquinone biosynthesisXianghui Li, Manliang Feng, Yongting Wang, et al.The Journal of Biological Chemistry|December 26, 2001
Use of indirect site-directed mutagenesis to alter the substrate specificity of methylamine dehydrogenaseYongting Wang, Dapeng Sun, Victor L DavidsonArchives of Biochemistry and Biophysics|July 20, 2002
Redox properties of an engineered purple Cu(A) azurinDapeng Sun, Xiaotang Wang, Victor L DavidsonBiochemistry|May 11, 2005
Site-directed mutagenesis of proline 94 to alanine in amicyanin converts a true electron transfer reaction into one that is kinetically coupledDapeng Sun, Xianghui Li, F Scott Mathews, et al.Biochemistry|November 20, 2002
Mutation of alphaPhe55 of methylamine dehydrogenase alters the reorganization energy and electronic coupling for its electron transfer reaction with amicyaninDapeng Sun, Zhi-wei Chen, F Scott Mathews, et al.Biochemistry|October 9, 2010
Functional importance of tyrosine 294 and the catalytic selectivity for the bis-Fe(IV) state of MauG revealed by replacement of this axial heme ligand with histidineNafez Abu Tarboush, Lyndal M R Jensen, Manliang Feng, et al.Pageof 38