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Biochemistry|November 14, 1989
Fe2+ binding to apo and holo mammalian ferritinD Jacobs, G D Watt, R B Frankel, et al.Journal of Inorganic Biochemistry|October 1, 1993
Purification, composition, charge, and molecular weight of the FeMo cofactor from Azotobacter vinelandii nitrogenaseH Q Huang, M Kofford, F B Simpson, et al.The Journal of Biological Chemistry|September 27, 2000
Evidence for a two-electron transfer using the all-ferrous Fe protein during nitrogenase catalysisA C Nyborg, J L Johnson, A Gunn, et al.Biochemistry|September 23, 1975
Stoichiometry, ATP/2e values, and energy requirements for reactions catalyzed by nitrogenase from Azotobacter vinelandiiG D Watt, W A Bulen, A Burns, et al.Biophysical Chemistry|April 28, 2004
Reduction of nitrogenase Fe protein from Azotobacter vinelandii by dithionite: quantitative and qualitative effects of nucleotides, temperature, pH and reaction bufferP E Wilson, J Bunker, T J Lowery, et al.Biochemistry|February 16, 1993
Role of phosphate in Fe2+ binding to horse spleen holoferritinH Heqing, R K Watt, R B Frankel, et al.Archives of Biochemistry and Biophysics|February 15, 1994
Molecular entrapment of small molecules within the interior of horse spleen ferritinB Webb, J Frame, Z Zhao, et al.Journal of Inorganic Biochemistry|June 1, 1988
Comparison of redox and EPR properties of the molybdenum iron proteins of Clostridium pasteurianum and Azotobacter vinelandii nitrogenasesT V Morgan, L E Mortenson, J W McDonald, et al.The Journal of Allergy and Clinical Immunology|October 1, 1980
Protective effect opf lodoxamide tromethamine on allergen inhalation challengeG D Watt, T C Bui, A K Bewtra, et al.Biochemistry|February 21, 1989
Redox reactions associated with iron release from mammalian ferritinD L Jacobs, G D Watt, R B Frankel, et al.Pageof 6