Certain facultative anaerobes such as the opportunistic human pathogen Pseudomonas aeruginosa can respire on nitrate, a process generally known as denitrification. This enables denitrifying bacteria to survive in anoxic environments and contributes, for example, to the formation of biofilm, hence increasing difficulties in eradicating P. aeruginosa infections. A central step in denitrification is the reduction of nitrite to nitric oxide by nitrite reductase NirS, an enzyme that requires the unique cofactor heme d1 . While heme d1 biosynthesis is mostly understood, the role of the essential periplasmatic protein NirF in this pathway remains unclear. Here, we have determined crystal structures of NirF and its complex with dihydroheme d1 , the...
In dieser Arbeit wurde der letzte Schritt der Biosynthese des Nitritreduktase Kofaktors Häm d1 in P....
The enzyme nitrogenase catalyzes the energy-dependent reduction of dinitrogen to ammonia via biologi...
The opportunistic pathogen Pseudomonas aeruginosa can grow in low oxygen, because it is capable of a...
Many bacteria can switch from oxygen to nitrogen oxides, such as nitrate or nitrite, as terminal ele...
The cytochrome cd1 nitrite reductase from Paracoccus pantotrophus catalyses the one electron reducti...
Nitrite reductase from Pseudomonas aeruginosa (NiR-Pa) is a dimer consisting of two identical 60 kDa...
AbstractBackground: Nitrite reductase from Pseudomonas aeruginosa (NiR-Pa) is a dimer consisting of ...
During the biosynthesis of heme d(1), the essential cofactor of cytochrome cd(1) nitrite reductase, ...
A key step in anaerobic nitrate respiration is the reduction of nitrite to nitric oxide, which is ca...
The periplasmic cytochrome cd1 nitrite reductase NirS occurring in denitrifying bacteria such as the...
The periplasmic cytochrome cd1 nitrite reductase NirS occurring in denitrifying bacteria such as the...
The nitrite reductase (NIR) from Pseudomonas aeruginosa (NIR-Pa) is a soluble enzyme catalysing the ...
In Pseudomonas aeruginosa, conversion of nitrite to NO in dissimilatory denitrification is catalyzed...
Pseudomonas aeruginosa is a ubiquitously occurring environmental bacterium and opportunistic pathoge...
AbstractIn Pseudomonas aeruginosa, conversion of nitrite to NO in dissimilatory denitrification is c...
In dieser Arbeit wurde der letzte Schritt der Biosynthese des Nitritreduktase Kofaktors Häm d1 in P....
The enzyme nitrogenase catalyzes the energy-dependent reduction of dinitrogen to ammonia via biologi...
The opportunistic pathogen Pseudomonas aeruginosa can grow in low oxygen, because it is capable of a...
Many bacteria can switch from oxygen to nitrogen oxides, such as nitrate or nitrite, as terminal ele...
The cytochrome cd1 nitrite reductase from Paracoccus pantotrophus catalyses the one electron reducti...
Nitrite reductase from Pseudomonas aeruginosa (NiR-Pa) is a dimer consisting of two identical 60 kDa...
AbstractBackground: Nitrite reductase from Pseudomonas aeruginosa (NiR-Pa) is a dimer consisting of ...
During the biosynthesis of heme d(1), the essential cofactor of cytochrome cd(1) nitrite reductase, ...
A key step in anaerobic nitrate respiration is the reduction of nitrite to nitric oxide, which is ca...
The periplasmic cytochrome cd1 nitrite reductase NirS occurring in denitrifying bacteria such as the...
The periplasmic cytochrome cd1 nitrite reductase NirS occurring in denitrifying bacteria such as the...
The nitrite reductase (NIR) from Pseudomonas aeruginosa (NIR-Pa) is a soluble enzyme catalysing the ...
In Pseudomonas aeruginosa, conversion of nitrite to NO in dissimilatory denitrification is catalyzed...
Pseudomonas aeruginosa is a ubiquitously occurring environmental bacterium and opportunistic pathoge...
AbstractIn Pseudomonas aeruginosa, conversion of nitrite to NO in dissimilatory denitrification is c...
In dieser Arbeit wurde der letzte Schritt der Biosynthese des Nitritreduktase Kofaktors Häm d1 in P....
The enzyme nitrogenase catalyzes the energy-dependent reduction of dinitrogen to ammonia via biologi...
The opportunistic pathogen Pseudomonas aeruginosa can grow in low oxygen, because it is capable of a...