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Biochemistry|January 9, 1990
Iron environment in ferritin with large amounts of phosphate, from Azotobacter vinelandii and horse spleen, analyzed using extended X-ray absorption fine structure (EXAFS)J S Rohrer, Q T Islam, G D Watt, et al.Biochemical and Biophysical Research Communications|September 14, 1986
Solubilization of the iron molybdenum cofactor of Azotobacter vinelandii nitrogenase in dimethylformamide and acetonitrileS M Lough, D L Jacobs, D M Lyons, et al.The Journal of Allergy and Clinical Immunology|February 1, 1984
Genetic analysis of allergic disease in twinsR J Hopp, A K Bewtra, G D Watt, et al.Biochemical and Biophysical Research Communications|December 16, 1987
Electron paramagnetic resonance studies of the tungsten-containing formate dehydrogenase from Clostridium thermoaceticumJ C Deaton, E I Solomon, G D Watt, et al.Journal of Inorganic Biochemistry|June 17, 2000
Reactions of Azotobacter vinelandii nitrogenase using Ti(III) as reductantA C Nyborg, J A Erickson, J L Johnson, et al.Biochimica Et Biophysica Acta|November 23, 2000
Analysis of steady state Fe and MoFe protein interactions during nitrogenase catalysisJ L Johnson, A C Nyborg, P E Wilson, et al.The Journal of Allergy and Clinical Immunology|March 1, 1987
Distribution of methacholine inhalation challenge responses in a selected adult populationD M Lang, R J Hopp, A K Bewtra, et al.Biochimica Et Biophysica Acta|November 23, 2000
Mechanistic interpretation of the dilution effect for Azotobacter vinelandii and Clostridium pasteurianum nitrogenase catalysisJ L Johnson, A C Nyborg, P E Wilson, et al.The Journal of Allergy and Clinical Immunology|January 1, 1986
Segregation analysis of bronchial response to methacholine inhalation challenge in families with and without asthmaR G Townley, A Bewtra, A F Wilson, et al.Biochemistry|November 26, 1999
Enhanced efficiency of ATP hydrolysis during nitrogenase catalysis utilizing reductants that form the all-ferrous redox state of the Fe proteinJ A Erickson, A C Nyborg, J L Johnson, et al.Pageof 6