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http://hub.abes.fr/acs/periodical/bichaw/1997/volume_36/issue_11/101021bi961960u/authorship/1
http://hub.abes.fr/acs/periodical/bichaw/2005/volume_44/issue_49/101021bi051702/authorship/6
http://hub.abes.fr/acs/periodical/inocaj/1995/volume_34/issue_21/101021ic00125a041/authorship/2
http://hub.abes.fr/acs/periodical/bichaw/1996/volume_35/issue_32/101021bi965008t/authorship/3
http://hub.abes.fr/acs/periodical/bichaw/1996/volume_35/issue_9/101021bi9518508/authorship/3
http://hub.abes.fr/acs/periodical/inocaj/2002/volume_41/issue_25/101021ic020303p/authorship/1
http://hub.abes.fr/acs/periodical/jpcbfk/2006/volume_110/issue_34/101021jp062904y/authorship/4
http://hub.abes.fr/acs/periodical/bichaw/2007/volume_46/issue_35/101021bi701113w/authorship/4
http://hub.abes.fr/acs/periodical/jacsat/2008/volume_130/issue_46/101021ja8038135/authorship/10
http://hub.abes.fr/acs/periodical/jacsat/1998/volume_120/issue_30/101021ja972625b/authorship/2
http://hub.abes.fr/acs/periodical/jacsat/2004/volume_126/issue_8/101021ja0375378/authorship/1
http://hub.abes.fr/acs/periodical/jacsat/2003/volume_125/issue_8/101021ja021005u/authorship/3
http://hub.abes.fr/acs/periodical/jacsat/2007/volume_129/issue_3/101021ja0661562/authorship/3
http://hub.abes.fr/acs/periodical/bichaw/2002/volume_41/issue_1/101021bi0117448/authorship/2
http://hub.abes.fr/acs/periodical/bichaw/2003/volume_42/issue_22/101021bi030030p/authorship/5
http://hub.abes.fr/acs/periodical/jacsat/2005/volume_127/issue_47/101021ja054426v/authorship/2
http://hub.abes.fr/acs/periodical/bichaw/2001/volume_40/issue_10/101021bi002020j/authorship/1
http://hub.abes.fr/acs/periodical/bichaw/2006/volume_45/issue_29/101021bi0606851/authorship/3
http://hub.abes.fr/acs/periodical/bichaw/2008/volume_47/issue_25/101021bi800125h/authorship/6
http://hub.abes.fr/acs/periodical/bichaw/2002/volume_41/issue_2/101021bi011514t/authorship/1
http://hub.abes.fr/acs/periodical/bichaw/2005/volume_44/issue_8/101021bi048256v/authorship/3
http://hub.abes.fr/acs/periodical/jacsat/2005/volume_127/issue_1/101021ja046184p/authorship/7
http://hub.abes.fr/acs/periodical/jacsat/2004/volume_126/issue_48/101021ja047295r/authorship/2
http://hub.abes.fr/acs/periodical/bichaw/2000/volume_39/issue_31/101021bi000648o/authorship/3
http://hub.abes.fr/acs/periodical/jacsat/1996/volume_118/issue_31/101021ja953256r/authorship/1
http://hub.abes.fr/acs/periodical/inocaj/2001/volume_40/issue_2/101021ic000798n/authorship/4
http://hub.abes.fr/acs/periodical/jacsat/2004/volume_126/issue_10/101021ja038188k/authorship/3
http://hub.abes.fr/acs/periodical/jacsat/2003/volume_125/issue_17/101021ja0345827/authorship/2
http://hub.abes.fr/acs/periodical/jacsat/2000/volume_122/issue_2/101021ja992796b/authorship/4
http://hub.abes.fr/acs/periodical/jacsat/1995/volume_117/issue_43/101021ja00148a025/authorship/6
http://hub.abes.fr/acs/periodical/inocaj/1994/volume_33/issue_15/101021ic00093a017/authorship/1
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Determination of the Self-Exchange Rate Constant for Rusticyanin from Thiobacillus ferrooxidans and a Comparison with Values for Other Type 1 Blue Copper Proteins
Crystal Structures of Oxidized and Reduced Stellacyanin fromHorseradish Roots
π-Interaction Tuning of the Active Site Properties of Metalloproteins
A 1H NMR Study of the Paramagnetic Active Site of the CuA Variant ofAmicyanin
Electron Transfer in Ruthenium-Modified Plastocyanin
Paramagnetic 1H NMR Spectrum of Nickel(II) Pseudoazurin: Investigation of the Active Site Structure and the Acid and AlkalineTransitions
Engineering Copper Sites in Proteins: Loops Confer NativeStructures and Properties to Chimeric Cupredoxins
Analysis of the Paramagnetic Copper(II) Site of Amicyanin by 1H NMRSpectroscopy
Optical Spectroscopic Investigation of the Alkaline Transition in Umecyanin fromHorseradish Root
Loop-Contraction Mutagenesis of a Type 1 Copper Site
Introduction of a π−π Interaction at the Active Site of a Cupredoxin: Characterization of the Met16Phe Pseudoazurin Mutant
Effect of pH on the Self-Exchange Reactivity of the Plant Plastocyanin from Parsley
Reduction Potential Tuning at a Type 1 Copper Site Does NotCompromise Electron Transfer Reactivity
Ultrafast Pump−Probe Study of Excited-State Charge-Transfer Dynamics in Umecyaninfrom Horseradish Root
Investigations of the Alkaline and Acid Transitions of Umecyanin, a Stellacyaninfrom Horseradish Roots
Loop-Directed Mutagenesis Converts Amicyaninfrom Thiobacillus versutus into a Novel BlueCopper Protein
Investigating the Cause of the Alkaline Transition of Phytocyanins
Pseudospecificity of the Acidic Patch of Plastocyanin for the Interaction withCytochrome f
The Active-Site Structure of Umecyanin, the Stellacyanin fromHorseradish Roots
Analysis of the Paramagnetic Copper(II) Site of Amicyanin by 1H NMR Spectroscopy
The Role of Hydrogen Bonding at the Active Site of a Cupredoxin: The Phe114ProAzurin Variant,
Influence of Loop Shortening on the Metal Binding Site of CupredoxinPseudoazurin,
Effect of Histidine 6 Protonation on the Active Site Structure and Electron-TransferCapabilities of Pseudoazurin from Achromobacter cycloclastes
Unusual Properties of Plastocyanin from the Fern Dryopteris crassirhizoma
Regulation of Protein Function: Crystal Packing Interfaces and Conformational Dimerization
Loop-Contraction Mutagenesis of Type 1 Copper Sites
Loop-Directed Mutagenesis of the Blue Copper Protein Amicyaninfrom Paracoccus versutus and Its Effect on the Structure and theActivity of the Type-1 Copper Site
Active-Site Structure and Electron-Transfer Reactivity ofPlastocyanins
The Met99Gln Mutant of Amicyanin from Paracoccusversutus
Engineered Cupredoxins and Bacterial Cytochrome c Oxidases Have Similar CuA Sites: Evidence from Resonance Raman Spectroscopy
Reactivity of Pseudoazurin from Achromobacter cycloclastes with Inorganic Redox Partners and Related NMR and Electrochemical Studies
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