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The Journal of Biological Chemistry|December 22, 1995
The mechanism and substrate specificity of the NADPH:flavin oxidoreductase from Escherichia coliF Fieschi, V Nivière, C Frier, et al.Biochemical and Biophysical Research Communications|August 31, 1992
8-Azidoadenosine and ribonucleotide reductaseB Roy, M Lepoivre, J L Decout, et al.The Journal of Biological Chemistry|April 19, 1996
The anaerobic Escherichia coli ribonucleotide reductase. Subunit structure and iron sulfur centerS Ollagnier, E Mulliez, J Gaillard, et al.Biochemistry|May 13, 1997
Flavin mononucleotide-binding domain of the flavoprotein component of the sulfite reductase from Escherichia coliJ Coves, M Zeghouf, D Macherel, et al.Proceedings of the National Academy of Sciences of the United States of America|May 1, 1990
The anaerobic ribonucleoside triphosphate reductase from Escherichia coli requires S-adenosylmethionine as a cofactorR Eliasson, M Fontecave, H Jörnvall, et al.The Journal of Biological Chemistry|May 24, 2000
The activating component of the anaerobic ribonucleotide reductase from Escherichia coli. An iron-sulfur center with only three cysteinesJ Tamarit, C Gerez, C Meier, et al.Chemical Communications (Cambridge, England)|April 22, 2017
Ruthenium-cobalt dinuclear complexes as photocatalysts for CO2 reductionX Wang, V Goudy, G Genesio, et al.Astrobiology|May 14, 2011
Is the presence of oxygen on an exoplanet a reliable biosignature?A Léger, M Fontecave, A Labeyrie, et al.Biochemical and Biophysical Research Communications|December 31, 1990
Microsomal lipid peroxidation and oxy-radicals formation are induced by insoluble iron-containing mineralsM Fontecave, M Jaouen, D Mansuy, et al.Biochemical and Biophysical Research Communications|September 5, 1995
The mechanism of the anaerobic Escherichia coli ribonucleotide reductase investigated with nuclear magnetic resonance spectroscopyR Eliasson, P Reichard, E Mulliez, et al.Pageof 12