In the nitrogenase molybdenum-iron (MoFe) protein, we have identified five potential substrate access pathways from the protein surface to the FeMo-cofactor (the active site) or the P-cluster using experimental structures of Xe pressurized into MoFe protein crystals from <i>Azotobacter vinelandii</i> and <i>Clostridium pasteurianum</i>. Additionally, all published structures of the MoFe protein, including those from <i>Klebsiella pneumoniae</i>, were analyzed for the presence of nonwater, small molecules bound to the protein interior. Each pathway is based on identification of plausible routes from buried small molecule binding sites to both the protein surface and a metallocluster. Of these five pathways, two have been previously suggested...
Nitrogenase catalyzes the reduction of dinitrogen through the activity of a complex of two easily se...
Three-dimensional structures of the nitrogenase iron protein and molybdenum-iron protein from Azotob...
Abstract Nitrogenases are a family of metalloenzymes that catalyse a key step in the global nitrogen...
In the nitrogenase molybdenum-iron (MoFe) protein, we have identified five potential substrate acces...
Mo-dependent nitrogenase catalyzes the biological reduction of N<sub>2</sub> to two NH<sub>3</sub> m...
The iron-molybdenum cofactor (FeMo-co) is the complex metal-sulfur cofactor found within the active ...
Structural models for the nitrogenase FeMo-cofactor and P-clusters are proposed based on crystallogr...
The crystal structure of the nitrogenase molybdenum-iron (MoFe) protein from Clostridium pasteurian...
This chapter discusses the structures of the metal centers and polypeptide chains of the nitrogenase...
Structures recently proposed for the FeMo-cofactor and P-cluster pair of the nitrogenase molybdenum-...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
The Mo-dependent nitrogenase comprises two interacting components called the Fe protein and the MoFe...
Nitrogenase catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
Nitrogenases reduce atmospheric nitrogen, yielding the basic inorganic molecule ammonia. The nitroge...
Nitrogenase catalyzes the reduction of dinitrogen through the activity of a complex of two easily se...
Three-dimensional structures of the nitrogenase iron protein and molybdenum-iron protein from Azotob...
Abstract Nitrogenases are a family of metalloenzymes that catalyse a key step in the global nitrogen...
In the nitrogenase molybdenum-iron (MoFe) protein, we have identified five potential substrate acces...
Mo-dependent nitrogenase catalyzes the biological reduction of N<sub>2</sub> to two NH<sub>3</sub> m...
The iron-molybdenum cofactor (FeMo-co) is the complex metal-sulfur cofactor found within the active ...
Structural models for the nitrogenase FeMo-cofactor and P-clusters are proposed based on crystallogr...
The crystal structure of the nitrogenase molybdenum-iron (MoFe) protein from Clostridium pasteurian...
This chapter discusses the structures of the metal centers and polypeptide chains of the nitrogenase...
Structures recently proposed for the FeMo-cofactor and P-cluster pair of the nitrogenase molybdenum-...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
The Mo-dependent nitrogenase comprises two interacting components called the Fe protein and the MoFe...
Nitrogenase catalyzes the enzymatic reduction of atmospheric dinitrogen to ammonia during the proces...
The reduction of substrates catalyzed by nitrogenase normally requires nucleotide-dependent Fe prote...
Nitrogenases reduce atmospheric nitrogen, yielding the basic inorganic molecule ammonia. The nitroge...
Nitrogenase catalyzes the reduction of dinitrogen through the activity of a complex of two easily se...
Three-dimensional structures of the nitrogenase iron protein and molybdenum-iron protein from Azotob...
Abstract Nitrogenases are a family of metalloenzymes that catalyse a key step in the global nitrogen...