The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe protein delivery of electrons to the MoFe protein, which contains the active site FeMo cofactor. Here, it is reported that independent substitution of three amino acids (β- 98Tyr→His, α-64Tyr→His, and β-99Phe→His) located between the P cluster and FeMo cofactor within the MoFe protein endows it with the ability to reduce protons to H2, azide to ammonia, and hydrazine to ammonia without the need for Fe protein or ATP. Instead, electrons can be provided by the low-potential reductant polyaminocarboxylate-ligated Eu(II) (Em values of −1.1 to −0.84 V vs the normal hydrogen electrode). The crystal structure of the β-98Tyr→His variant MoFe protein was d...
Abstract Nitrogenases are a family of metalloenzymes that catalyse a key step in the global nitrogen...
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 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 catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
Nitrogenase catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
Nitrogenase is the enzyme that reduces atmospheric dinitrogen (N2) to ammonia (NH3) in biological sy...
Nitrogenase is the enzyme that reduces atmospheric dinitrogen (N2) to ammonia (NH3) in biological sy...
Nitrogenase catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
Nitrogenase catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
Although the nitrogen-fixing enzyme nitrogenase critically requires both a reductase component (Fe p...
Although the nitrogen-fixing enzyme nitrogenase critically requires both a reductase component (Fe p...
Nitrogenase catalyzes the reduction of dinitrogen through the activity of a complex of two easily se...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
Abstract Nitrogenases are a family of metalloenzymes that catalyse a key step in the global nitrogen...
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 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 catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
Nitrogenase catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
Nitrogenase is the enzyme that reduces atmospheric dinitrogen (N2) to ammonia (NH3) in biological sy...
Nitrogenase is the enzyme that reduces atmospheric dinitrogen (N2) to ammonia (NH3) in biological sy...
Nitrogenase catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
Nitrogenase catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
Although the nitrogen-fixing enzyme nitrogenase critically requires both a reductase component (Fe p...
Although the nitrogen-fixing enzyme nitrogenase critically requires both a reductase component (Fe p...
Nitrogenase catalyzes the reduction of dinitrogen through the activity of a complex of two easily se...
We demonstrate electrochemical control of the nitrogenase MoFe protein, in the absence of Fe protein...
Abstract Nitrogenases are a family of metalloenzymes that catalyse a key step in the global nitrogen...
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...