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Victor L Davidson

Showing results (11-20 of 109) with videos related to

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Metallomics : Integrated Biometal Science|January 25, 2011
Cupredoxins--a study of how proteins may evolve to use metals for bioenergetic processesMoonsung Choi, Victor L Davidson
Archives of Biochemistry and Biophysics|October 23, 2013
MauG, a diheme enzyme that catalyzes tryptophan tryptophylquinone biosynthesis by remote catalysisSooim Shin, Victor L Davidson
Biochemistry|February 13, 2003
Effects of engineering uphill electron transfer into the methylamine dehydrogenase-amicyanin-cytochrome c-551i complexDapeng Sun, Victor L Davidson
Biochemistry|April 5, 2019
The Redox Properties of a Cysteine Tryptophylquinone-Dependent Glycine Oxidase Are Distinct from Those of Tryptophylquinone-Dependent DehydrogenasesZhongxin Ma, Victor L Davidson
FEBS Letters|June 14, 2002
Inter-subunit cross-linking of methylamine dehydrogenase by cyclopropylamine requires residue alphaPhe55Dapeng Sun, Victor L Davidson
Biochimica Et Biophysica Acta|February 9, 2012
Tryptophan tryptophylquinone biosynthesis: a radical approach to posttranslational modificationVictor L Davidson, Aimin Liu
Journal of the American Chemical Society|March 13, 2003
Evidence for substrate activation of electron transfer from methylamine dehydrogenase to amicyaninVictor L Davidson, Dapeng Sun
The Biochemical Journal|October 24, 2015
Converting the bis-FeIV state of the diheme enzyme MauG to Compound I decreases the reorganization energy for electron transferBrian A Dow, Victor L Davidson
Biochimica Et Biophysica Acta|June 19, 2015
Characterization of the free energy dependence of an interprotein electron transfer reaction by variation of pH and site-directed mutagenesisBrian A Dow, Victor L Davidson
Current Opinion in Chemical Biology|August 4, 2009
Uncovering novel biochemistry in the mechanism of tryptophan tryptophylquinone cofactor biosynthesisCarrie M Wilmot, Victor L Davidson
Pageof 11

Showing results (11-20 of 109) with videos related to

Sort By:
Pageof 11
Metallomics : Integrated Biometal Science|January 25, 2011
Cupredoxins--a study of how proteins may evolve to use metals for bioenergetic processesMoonsung Choi, Victor L Davidson
Archives of Biochemistry and Biophysics|October 23, 2013
MauG, a diheme enzyme that catalyzes tryptophan tryptophylquinone biosynthesis by remote catalysisSooim Shin, Victor L Davidson
Biochemistry|February 13, 2003
Effects of engineering uphill electron transfer into the methylamine dehydrogenase-amicyanin-cytochrome c-551i complexDapeng Sun, Victor L Davidson
Biochemistry|April 5, 2019
The Redox Properties of a Cysteine Tryptophylquinone-Dependent Glycine Oxidase Are Distinct from Those of Tryptophylquinone-Dependent DehydrogenasesZhongxin Ma, Victor L Davidson
FEBS Letters|June 14, 2002
Inter-subunit cross-linking of methylamine dehydrogenase by cyclopropylamine requires residue alphaPhe55Dapeng Sun, Victor L Davidson
Biochimica Et Biophysica Acta|February 9, 2012
Tryptophan tryptophylquinone biosynthesis: a radical approach to posttranslational modificationVictor L Davidson, Aimin Liu
Journal of the American Chemical Society|March 13, 2003
Evidence for substrate activation of electron transfer from methylamine dehydrogenase to amicyaninVictor L Davidson, Dapeng Sun
The Biochemical Journal|October 24, 2015
Converting the bis-FeIV state of the diheme enzyme MauG to Compound I decreases the reorganization energy for electron transferBrian A Dow, Victor L Davidson
Biochimica Et Biophysica Acta|June 19, 2015
Characterization of the free energy dependence of an interprotein electron transfer reaction by variation of pH and site-directed mutagenesisBrian A Dow, Victor L Davidson
Current Opinion in Chemical Biology|August 4, 2009
Uncovering novel biochemistry in the mechanism of tryptophan tryptophylquinone cofactor biosynthesisCarrie M Wilmot, Victor L Davidson
Pageof 11