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Biochemistry|January 1, 1985
Complex formation and O2 sensitivity of Azotobacter vinelandii nitrogenase and its component proteinsZ C Wang, A Burns, G D WattBiochemistry|December 8, 1981
Stoichiometry and spectral properties of the MoFe cofactor and noncofactor redox centers in the MoFe protein of nitrogenase from Azotobacter vinelandiiG D Watt, A Burns, D L TennentBiophysical Chemistry|July 9, 2021
Positive cooperativity during Azotobacter vinelandii nitrogenase-catalyzed acetylene reductionSteven Truscott, Randy S Lewis, G D WattBiochemistry|October 13, 1992
Redox reactions of apo mammalian ferritinR K Watt, R B Frankel, G D WattBiophysical Chemistry|September 12, 2001
Duplication and extension of the Thorneley and Lowe kinetic model for Klebsiella pneumoniae nitrogenase catalysis using a MATHEMATICA software platformP E Wilson, A C Nyborg, G D WattJournal of Inorganic Biochemistry|January 1, 1996
A kinetic study of iron release from Azotobacter vinelandii bacterial ferritinT D Richards, K R Pitts, G D WattProceedings of the National Academy of Sciences of the United States of America|June 1, 1985
Reduction of mammalian ferritinG D Watt, R B Frankel, G C PapaefthymiouJournal of Inorganic Biochemistry|November 15, 1994
Iron core formation in horse spleen ferritin: magnetic susceptibility, pH, and compositional studiesS Hilty, B Webb, R B Frankel, et al.Analytical Biochemistry|April 1, 1994
A capillary electrophoresis method for studying apo, holo, recombinant, and subunit dissociated ferritinsZ Zhao, A Malik, M L Lee, et al.Biochemistry|October 14, 1980
Redox and spectroscopic properties of oxidized MoFe protein from Azotobacter vinelandiiG D Watt, A Burns, S Lough, et al.Pageof 6