We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein or ATP, using europium (III/II) polyaminocarboxylate complexes as electron transfer mediators. This allows the potential dependence of proton reduction and inhibitor (CO) binding to the active site FeMo-cofactor to be established. Reduction of protons to H2 is catalyzed by the wild type MoFe protein and β-98Tyr→His and β 99Phe→His variants of the MoFe protein at potentials more negative than -800 mV (vs SHE), with greater electrocatalytic proton reduction rates observed for the variants compared to the wild-type protein. Electrocatalytic proton reduction is strongly attenuated by carbon monoxide (CO), and the potential-dependence of CO bindi...
Nitrogenases catalyze biological dinitrogen (N2) reduction to ammonia (NH3), and also reduce a numbe...
The fixation of atmospheric dinitrogen to ammonia by industrial technologies (such as the Haber Bosc...
Achieving a unified understanding of the mechanism of a multicenter redox enzyme such as [NiFe] hydr...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
The nitrogenase enzyme is a metalloenzyme that plays a key role in the biological nitrogen cycle. Ni...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
Nitrogenase is the only enzyme known to catalyze the reduction of N-2 to 2NH(3). In vivo, the MoFe p...
Nitrogenase is the only enzyme known to catalyze the reduction of N-2 to 2NH(3). In vivo, the MoFe p...
Nitrogenases catalyze biological dinitrogen (N2) reduction to ammonia (NH3), and also reduce a numbe...
Nitrogenases catalyze biological dinitrogen (N2) reduction to ammonia (NH3), and also reduce a numbe...
Nitrogenases catalyze biological dinitrogen (N2) reduction to ammonia (NH3), and also reduce a numbe...
The fixation of atmospheric dinitrogen to ammonia by industrial technologies (such as the Haber Bosc...
Achieving a unified understanding of the mechanism of a multicenter redox enzyme such as [NiFe] hydr...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
The nitrogenase enzyme is a metalloenzyme that plays a key role in the biological nitrogen cycle. Ni...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
Nitrogenase is the only enzyme known to catalyze the reduction of N-2 to 2NH(3). In vivo, the MoFe p...
Nitrogenase is the only enzyme known to catalyze the reduction of N-2 to 2NH(3). In vivo, the MoFe p...
Nitrogenases catalyze biological dinitrogen (N2) reduction to ammonia (NH3), and also reduce a numbe...
Nitrogenases catalyze biological dinitrogen (N2) reduction to ammonia (NH3), and also reduce a numbe...
Nitrogenases catalyze biological dinitrogen (N2) reduction to ammonia (NH3), and also reduce a numbe...
The fixation of atmospheric dinitrogen to ammonia by industrial technologies (such as the Haber Bosc...
Achieving a unified understanding of the mechanism of a multicenter redox enzyme such as [NiFe] hydr...