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Analytical Biochemistry|April 5, 1997
A mediated thin-layer voltammetry method for the study of redox protein electrochemistryV D Parker, L C SeefeldtAnalytical Biochemistry|August 1, 1997
Entropies of redox reactions between proteins and mediators: the temperature dependence of reversible electrode potentials in aqueous buffersY Liu, L C Seefeldt, V D ParkerAnalytical Biochemistry|November 18, 2000
Use of stopped-flow spectrophotometry to establish midpoint potentials for redox proteinsM Sørlie, L C Seefeldt, V D ParkerBiochemistry|February 7, 1998
Electron transfer in nitrogenase analyzed by Marcus theory: evidence for gating by MgATPW N Lanzilotta, V D Parker, L C SeefeldtBiochimica Et Biophysica Acta|February 16, 1999
Thermodynamics of nucleotide interactions with the Azotobacter vinelandii nitrogenase iron proteinW N Lanzilotta, V D Parker, L C SeefeldtAnalytical Biochemistry|July 1, 1997
Determination of rate and equilibrium constants for the reactions between electron transfer mediators and proteins by linear sweep voltammetryV D Parker, A Roddick, L C Seefeldt, et al.Protein Science : a Publication of the Protein Society|November 1, 1994
Docking of nitrogenase iron- and molybdenum-iron proteins for electron transfer and MgATP hydrolysis: the role of arginine 140 and lysine 143 of the Azotobacter vinelandii iron proteinL C SeefeldtBiochemistry|December 24, 1996
Electron transfer from the nitrogenase iron protein to the [8Fe-(7/8)S] clusters of the molybdenum-iron proteinW N Lanzilotta, L C SeefeldtAnalytical Biochemistry|September 1, 1994
A continuous, spectrophotometric activity assay for nitrogenase using the reductant titanium(III) citrateL C Seefeldt, S A EnsignBiochemistry|October 23, 1997
Changes in the midpoint potentials of the nitrogenase metal centers as a result of iron protein-molybdenum-iron protein complex formationW N Lanzilotta, L C SeefeldtPageof 7