The Molybdenum-nitrogenase is responsible for most biological nitrogen fixation activity (BNF) in the biosphere. Due to its great agronomical importance, it has been the subject of profound genetic and biochemical studies. The Mo nitrogenase carries at its active site a unique iron-molybdenum cofactor (FeMoco) that consists of an inorganic 7 Fe, 1 Mo, 1 C, 9 S core coordinated to the organic acid homocitrate. Biosynthesis of FeMo-co occurs outside nitrogenase through a complex and highly regulated pathway involving proteins acting as molecular scaffolds, metallocluster carriers or enzymes that provide substrates in appropriate chemical forms. Specific expression regulatory factors tightly control the accumulation levels of all these other c...
Nitrogen is a limiting nutrient for plant growth, both in natural and agricultural ecosystems. Biolo...
One of the main hurdles to engineer nitrogenase in a non-diazotrophic host is achieving NifB activit...
AbstractThe in vitro reconstitution of molybdenum nitrogenase was manipulated to generate a chimeric...
The molybdenum nitrogenase, present in a diverse group of bacteria and archea, is the major contribu...
The iron-molybdenum cofactor (FeMo-co) is the complex metal-sulfur cofactor found within the active ...
The Mo-dependent nitrogenase comprises two interacting components called the Fe protein and the MoFe...
The Mo-dependent nitrogenase comprises two interacting components called the Fe protein and the MoFe...
The iron (Fe) protein is one of two components involved in the biological fixation of dinitrogen (N2...
Engineering plants to synthesize nitrogenase and assimilate atmospheric N2 will reduce crop dependen...
The iron (Fe) protein is one of two components involved in the biological fixation of dinitrogen (N2...
All diazotrophic organisms sequenced to date encode a molybdenum-dependent nitrogenase, but some als...
AbstractAzotobacter vinelandii carries three different and genetically distinct nitrogenase systems ...
Deutsche Forschungsgemeinschaft RTG1976The nitrogen-fixing microbe Azotobacter vinelandii has the a...
Azotobacter vinelandii produces three genetically distinct, but structurally and mechanistically sim...
The N2 fixing bacterium Azotobacter vinelandii carries a molybdenum storage protein, referred to as ...
Nitrogen is a limiting nutrient for plant growth, both in natural and agricultural ecosystems. Biolo...
One of the main hurdles to engineer nitrogenase in a non-diazotrophic host is achieving NifB activit...
AbstractThe in vitro reconstitution of molybdenum nitrogenase was manipulated to generate a chimeric...
The molybdenum nitrogenase, present in a diverse group of bacteria and archea, is the major contribu...
The iron-molybdenum cofactor (FeMo-co) is the complex metal-sulfur cofactor found within the active ...
The Mo-dependent nitrogenase comprises two interacting components called the Fe protein and the MoFe...
The Mo-dependent nitrogenase comprises two interacting components called the Fe protein and the MoFe...
The iron (Fe) protein is one of two components involved in the biological fixation of dinitrogen (N2...
Engineering plants to synthesize nitrogenase and assimilate atmospheric N2 will reduce crop dependen...
The iron (Fe) protein is one of two components involved in the biological fixation of dinitrogen (N2...
All diazotrophic organisms sequenced to date encode a molybdenum-dependent nitrogenase, but some als...
AbstractAzotobacter vinelandii carries three different and genetically distinct nitrogenase systems ...
Deutsche Forschungsgemeinschaft RTG1976The nitrogen-fixing microbe Azotobacter vinelandii has the a...
Azotobacter vinelandii produces three genetically distinct, but structurally and mechanistically sim...
The N2 fixing bacterium Azotobacter vinelandii carries a molybdenum storage protein, referred to as ...
Nitrogen is a limiting nutrient for plant growth, both in natural and agricultural ecosystems. Biolo...
One of the main hurdles to engineer nitrogenase in a non-diazotrophic host is achieving NifB activit...
AbstractThe in vitro reconstitution of molybdenum nitrogenase was manipulated to generate a chimeric...