Many species of Bacteria and Archaea respire nitrate using a molybdenum-dependent membrane-bound respiratory system called Nar. Classically, the ‘Bacterial’ Nar system is oriented such that nitrate reduction takes place on the inside of this membrane. However, the active site subunit of the ‘Archaeal’ Nar systems has a twin arginine (‘RR’) motif, which is a suggestion of translocation to the outside of the cytoplasmic membrane. These ‘Archaeal’ type of nitrate reductases are part of a group of molybdoenzymes with an ‘RR’ motif that are predicted to have an aspartate ligand to the molybdenum ion. This group includes selenate reductases and possible sequence signatures are described that serve to distinguish the Nar nitrate reductases from th...
J Biol Inorg Chem (2008) 13:1321–1333 DOI 10.1007/s00775-008-0416-1Membrane-bound nitrate reductase ...
Nitrate is available to microbes in many environments due to sustained use of inorganic fertilizers ...
AbstractNovel periplasmic and membrane-bound nitrate reductases lacking molybdenum and molybdenum co...
Many species of Bacteria and Archaea respire nitrate using a molybdenum-dependent membrane-bound res...
Many species of Bacteria and Archaea respire nitrate using a molybdenum-dependent membrane-bound res...
Prokaryotic nitrate reduction can serve a number of physiological roles and can be catalysed by a nu...
AbstractThe structure of the catalytic and electron-transfer subunits (NarGH) of the integral membra...
Bacterial cytoplasmic assimilatory nitrate reductases are the least well characterized of all of the...
Bacterial cytoplasmic assimilatory nitrate reductases are the least well characterized of all of the...
AbstractGenes encoding the NarG and NarH subunits of the molybdo–iron–sulfur enzyme, a nitrate reduc...
Nitrogen is a vital component in living organisms as it participates in the making of essential biom...
AbstractDissimilatory nitrate reductase was purified from a denitrifying halophilic archaeon, Haloar...
Nitrate is available to microbes in many environments due to sustained use of inorganic fertilizers ...
Bacterial nitrate reductases can be classified into at least three groups according to their localiz...
J Biol Inorg Chem (2008) 13:1321–1333 DOI 10.1007/s00775-008-0416-1Membrane-bound nitrate reductase ...
J Biol Inorg Chem (2008) 13:1321–1333 DOI 10.1007/s00775-008-0416-1Membrane-bound nitrate reductase ...
Nitrate is available to microbes in many environments due to sustained use of inorganic fertilizers ...
AbstractNovel periplasmic and membrane-bound nitrate reductases lacking molybdenum and molybdenum co...
Many species of Bacteria and Archaea respire nitrate using a molybdenum-dependent membrane-bound res...
Many species of Bacteria and Archaea respire nitrate using a molybdenum-dependent membrane-bound res...
Prokaryotic nitrate reduction can serve a number of physiological roles and can be catalysed by a nu...
AbstractThe structure of the catalytic and electron-transfer subunits (NarGH) of the integral membra...
Bacterial cytoplasmic assimilatory nitrate reductases are the least well characterized of all of the...
Bacterial cytoplasmic assimilatory nitrate reductases are the least well characterized of all of the...
AbstractGenes encoding the NarG and NarH subunits of the molybdo–iron–sulfur enzyme, a nitrate reduc...
Nitrogen is a vital component in living organisms as it participates in the making of essential biom...
AbstractDissimilatory nitrate reductase was purified from a denitrifying halophilic archaeon, Haloar...
Nitrate is available to microbes in many environments due to sustained use of inorganic fertilizers ...
Bacterial nitrate reductases can be classified into at least three groups according to their localiz...
J Biol Inorg Chem (2008) 13:1321–1333 DOI 10.1007/s00775-008-0416-1Membrane-bound nitrate reductase ...
J Biol Inorg Chem (2008) 13:1321–1333 DOI 10.1007/s00775-008-0416-1Membrane-bound nitrate reductase ...
Nitrate is available to microbes in many environments due to sustained use of inorganic fertilizers ...
AbstractNovel periplasmic and membrane-bound nitrate reductases lacking molybdenum and molybdenum co...