KEGG   PATHWAY: ko00910Help
Entry
ko00910                     Pathway                                

Name
Nitrogen metabolism
Description
The biological process of the nitrogen cycle is a complex interplay among many microorganisms catalyzing different reactions. In biological world, nitrogen is found in varying oxidation states from nitrate (the most oxidized form) to ammonia (the most reduced form). Gaseous nitrogen cannot be absorbed and used as a nutrient by plants and animals. It must first be converted to ammonia by microorganisms, so that it can enter the ecological chain as part of the nitrogen cycle. The core nitrogen cycle involves four reduction pathways and two oxidation pathways. Nitrogen fixation [MD:M00175] is the process of reducing atmospheric molecular nitrogen to ammonia, a biologically useful reduced form incorporated into the amino acids and other vital compounds. The ability of fixing atmospheric nitrogen by the nitrogenase enzyme complex is present in restricted prokaryotes (diazotroph). Assimilatory nitrate reduction [MD:M00531] is the biological conversion of nitrite or nitrate to ammonia. Dissimilatory nitrate reduction includes two different processes: denitrification [MD:M00529] and dissimilatory nitrate reduction to ammonium [MD:M00530]. Denitrification is a respiration in which nitrate or nitrite is reduced as a terminal electron acceptor under low oxygen or anoxic conditions. As a consequence, gaseous nitrogen compounds (N2, NO and N2O) are produced to the atmosphere. Denitrifying organisms are found among bacteria, archaea and eukaryotes, but mainly in heterotrophic microorganism. The two oxidation pathways are anammox and nitrification [MD:M00528]. Anammox (anaerobic ammonium oxidation) is a recently discovered biochemical process of oxidizing ammonium into dinitrogen gas using nitrite as an electron acceptor. It is catabolized in the anammoxosome that is a membrane bound compartment inside the cytoplasm. Planctomycetes (e.g., K. stuttgartiensis), known chemolithoautotroph, performs this anammox process. Nitrification is the biological conversion of ammonia to nitrite or nitrate. Ammonia-oxidizing microorganisms (e.g., Nitrosomonas and Nitrosococcus) oxidize ammonia with oxygen into nitrite and, following this metabolic process, nitrite-oxidizing microorganisms (e.g., Nitrobacter) oxidize nitrite into nitrate under an aerobic condition. These chemolithoautotrophic microorganisms use ammonia or nitrite as a respiratory substance and use electrons from the oxidation of compounds to produce energy.
Class
Metabolism; Energy metabolism
BRITE hierarchy
Pathway map
Nitrogen metabolism
ko00910

All organismsOrtholog table
Module
M00175  
Nitrogen fixation, nitrogen => ammonia [PATH:ko00910]
M00528  
Nitrification, ammonia => nitrite [PATH:ko00910]
M00529  
Denitrification, nitrate => nitrogen [PATH:ko00910]
M00530  
Dissimilatory nitrate reduction, nitrate => ammonia [PATH:ko00910]
M00531  
Assimilatory nitrate reduction, nitrate => ammonia [PATH:ko00910]
M00560  
Ammonia oxidation [PATH:ko00910]
Disease
H00923  
Congenital systemic glutamine deficiency (CSGD)
Other DBs
BSID: 
GO: 
Orthology
K01455  
formamidase [EC:3.5.1.49]
K00926  
carbamate kinase [EC:2.7.2.2]
K01948  
carbamoyl-phosphate synthase (ammonia) [EC:6.3.4.16]
K01725  
cyanate lyase [EC:4.2.1.104]
K01672  
carbonic anhydrase [EC:4.2.1.1]
K01673  
carbonic anhydrase [EC:4.2.1.1]
K01674  
carbonic anhydrase [EC:4.2.1.1]
K00605  
aminomethyltransferase [EC:2.1.2.10]
K01744  
aspartate ammonia-lyase [EC:4.3.1.1]
K05597  
glutamin-(asparagin-)ase [EC:3.5.1.38]
K01914  
aspartate--ammonia ligase [EC:6.3.1.1]
K01424  
L-asparaginase [EC:3.5.1.1]
K10944  
ammonia monooxygenase subunit A [EC:1.14.99.39]
K10945  
ammonia monooxygenase subunit B
K10946  
ammonia monooxygenase subunit C
K05601  
hydroxylamine reductase [EC:1.7.99.1]
K15864  
nitrite reductase (NO-forming) / hydroxylamine reductase [EC:1.7.99.1 1.7.2.1]
K10535  
hydroxylamine dehydrogenase [EC:1.7.2.6]
K00459  
nitronate monooxygenase [EC:1.13.12.16]
K00367  
ferredoxin-nitrate reductase [EC:1.7.7.2]
K00360  
nitrate reductase (NADH) [EC:1.7.1.1]
K10534  
nitrate reductase (NADPH) [EC:1.7.1.3]
K15875  
nitrate reductase [NAD(P)H] [EC:1.7.1.2]
K00370  
nitrate reductase 1, alpha subunit [EC:1.7.99.4]
K00371  
nitrate reductase 1, beta subunit [EC:1.7.99.4]
K00374  
nitrate reductase 1, gamma subunit [EC:1.7.99.4]
K00373  
nitrate reductase 1, delta subunit
K08345  
nitrate reductase 2, alpha subunit [EC:1.7.99.4]
K08346  
nitrate reductase 2, beta subunit [EC:1.7.99.4]
K08347  
nitrate reductase 2, gamma subunit [EC:1.7.99.4]
K08361  
nitrate reductase 2, delta subunit
K00372  
nitrate reductase catalytic subunit [EC:1.7.99.4]
K02567  
periplasmic nitrate reductase NapA [EC:1.7.99.4]
K02568  
cytochrome c-type protein NapB
K15905  
nitrite oxidoreductase alpha subunit
K15906  
nitrite oxidoreductase beta subunit
K00362  
nitrite reductase (NAD(P)H) large subunit [EC:1.7.1.4]
K00363  
nitrite reductase (NAD(P)H) small subunit [EC:1.7.1.4]
K00366  
ferredoxin-nitrite reductase [EC:1.7.7.1]
K03385  
cytochrome c-552 [EC:1.7.2.2]
K15876  
cytochrome c-type protein
K00368  
nitrite reductase (NO-forming) [EC:1.7.2.1]
K04561  
nitric oxide reductase subunit B [EC:1.7.2.5]
K02305  
nitric oxide reductase subunit C
K15877  
fungal nitric oxide reductase [EC:1.7.1.14]
K00376  
nitrous-oxide reductase [EC:1.7.2.4]
K00531  
nitrogenase [EC:1.18.6.1]
K02586  
nitrogenase molybdenum-iron protein alpha chain [EC:1.18.6.1]
K02591  
nitrogenase molybdenum-iron protein beta chain [EC:1.18.6.1]
K02588  
nitrogenase iron protein NifH [EC:1.18.6.1]
K02595  
nitrogenase-stabilizing/protective protein
K03839  
flavodoxin I
K15371  
glutamate dehydrogenase [EC:1.4.1.2]
K00260  
glutamate dehydrogenase [EC:1.4.1.2]
K00261  
glutamate dehydrogenase (NAD(P)+) [EC:1.4.1.3]
K00262  
glutamate dehydrogenase (NADP+) [EC:1.4.1.4]
K01915  
glutamine synthetase [EC:6.3.1.2]
K01425  
glutaminase [EC:3.5.1.2]
K00264  
glutamate synthase (NADPH/NADH) [EC:1.4.1.14 1.4.1.13]
K00265  
glutamate synthase (NADPH/NADH) large chain [EC:1.4.1.14 1.4.1.13]
K00266  
glutamate synthase (NADPH/NADH) small chain [EC:1.4.1.14 1.4.1.13]
K01953  
asparagine synthase (glutamine-hydrolysing) [EC:6.3.5.4]
K00284  
glutamate synthase (ferredoxin) [EC:1.4.7.1]
K01501  
nitrilase [EC:3.5.5.1]
K00411  
ubiquinol-cytochrome c reductase iron-sulfur subunit [EC:1.10.2.2]
K00412  
ubiquinol-cytochrome c reductase cytochrome b subunit
K00413  
ubiquinol-cytochrome c reductase cytochrome c1 subunit
K00410  
ubiquinol-cytochrome c reductase cytochrome b/c1 subunit
K02274  
cytochrome c oxidase subunit I [EC:1.9.3.1]
K02275  
cytochrome c oxidase subunit II [EC:1.9.3.1]
K02276  
cytochrome c oxidase subunit III [EC:1.9.3.1]
K15576  
nitrate/nitrite transport system substrate-binding protein
K15577  
nitrate/nitrite transport system permease protein
K15578  
nitrate/nitrite transport system ATP-binding protein [EC:3.6.3.-]
K15579  
nitrate/nitrite transport system ATP-binding protein
K00330  
NADH-quinone oxidoreductase subunit A [EC:1.6.5.3]
K00331  
NADH-quinone oxidoreductase subunit B [EC:1.6.5.3]
K00332  
NADH-quinone oxidoreductase subunit C [EC:1.6.5.3]
K00333  
NADH-quinone oxidoreductase subunit D [EC:1.6.5.3]
K13378  
NADH-quinone oxidoreductase subunit C/D [EC:1.6.5.3]
K13380  
NADH-quinone oxidoreductase subunit B/C/D [EC:1.6.5.3]
K00334  
NADH-quinone oxidoreductase subunit E [EC:1.6.5.3]
K00335  
NADH-quinone oxidoreductase subunit F [EC:1.6.5.3]
K00336  
NADH-quinone oxidoreductase subunit G [EC:1.6.5.3]
K00337  
NADH-quinone oxidoreductase subunit H [EC:1.6.5.3]
K00338  
NADH-quinone oxidoreductase subunit I [EC:1.6.5.3]
K00339  
NADH-quinone oxidoreductase subunit J [EC:1.6.5.3]
K00340  
NADH-quinone oxidoreductase subunit K [EC:1.6.5.3]
K00341  
NADH-quinone oxidoreductase subunit L [EC:1.6.5.3]
K00342  
NADH-quinone oxidoreductase subunit M [EC:1.6.5.3]
K15863  
NADH-quinone oxidoreductase subunit L/M [EC:1.6.5.3]
K00343  
NADH-quinone oxidoreductase subunit N [EC:1.6.5.3]
K15878  
rieske iron-sulphur protein
K15879  
cytochrome b-561
K02569  
cytochrome c-type protein NapC
K02573  
ferredoxin-type protein NapG
K02574  
ferredoxin-type protein NapH
K03521  
electron transfer flavoprotein beta subunit
K03522  
electron transfer flavoprotein alpha subunit
K00313  
electron transfer flavoprotein-quinone oxidoreductase [EC:1.5.5.-]
K03737  
putative pyruvate-flavodoxin oxidoreductase [EC:1.2.7.-]
K04013  
cytochrome c-type protein NrfB
K04014  
protein NrfC
K04015  
protein NrfD
K14028  
methanol dehydrogenase (cytochrome c) subunit 1 [EC:1.1.2.7]
K16254  
mxaJ protein
K16255  
cytochrome c-L
K14029  
methanol dehydrogenase (cytochrome c) subunit 2 [EC:1.1.2.7]
K16256  
mxaA protein
K16257  
mxaC protein
K16258  
mxaK protein
K16259  
mxaL protein
K16260  
mxaD protein
K16154  
methane monooxygenase subunit A [EC:1.14.13.25]
K16155  
methane monooxygenase subunit B [EC:1.14.13.25]
K16156  
methane monooxygenase subunit C [EC:1.14.13.25]
K02277  
cytochrome c oxidase subunit IV [EC:1.9.3.1]
Compound
C00001  
H2O
C00002  
ATP
C00003  
NAD+
C00004  
NADH
C00005  
NADPH
C00007  
Oxygen
C00008  
ADP
C00011  
CO2
C00014  
NH3
C00016  
FAD
C00022  
Pyruvate
C00025  
L-Glutamate
C00037  
Glycine
C00049  
L-Aspartate
C00058  
Formate
C00064  
L-Glutamine
C00067  
Formaldehyde
C00080  
H+
C00088  
Nitrite
C00132  
Methanol
C00152  
L-Asparagine
C00169  
Carbamoyl phosphate
C00192  
Hydroxylamine
C00244  
Nitrate
C00390  
Ubiquinol
C00399  
Ubiquinone
C00488  
Formamide
C00524  
Cytochrome c
C00533  
Nitric oxide
C00697  
Nitrogen
C00726  
Nitrile
C00828  
Menaquinone
C00887  
Nitrous oxide
C00949  
Cytochrome c-552
C01342  
NH4+
C01353  
Carbonic acid
C01358  
NH4OH
C01417  
Cyanate
C01438  
Methane
C01563  
Carbamate
C01695  
Ferredoxin
C05361  
Hydrazine
C05819  
Menaquinol
C06058  
Nitroalkane
C19922  
Cytochrome c-554
C19923  
Cytochrome P-460
C19924  
Membrane-associated cytochrome c-552
C19925  
Cytochrome c-550
C19926  
Pseudoazurin
C19927  
Cytochrome b
C19928  
Molybdopterin guanine dinucleotide
C19940  
Ferredoxin N
C19941  
FdI
Reference
  Authors
Scott JD, Ludwig RA
  Title
Azorhizobium caulinodans electron-transferring flavoprotein N electrochemically couples pyruvate dehydrogenase complex activity to N2 fixation.
  Journal
Microbiology 150:117-26 (2004)
Reference
  Authors
Kneip C, Lockhart P, Voss C, Maier UG
  Title
Nitrogen fixation in eukaryotes--new models for symbiosis.
  Journal
BMC Evol Biol 7:55 (2007)
Reference
  Authors
Whittaker M, Bergmann D, Arciero D, Hooper AB
  Title
Electron transfer during the oxidation of ammonia by the chemolithotrophic bacterium Nitrosomonas europaea.
  Journal
Biochim Biophys Acta 1459:346-55 (2000)
Reference
  Authors
Cabello P, Roldan MD, Moreno-Vivian C
  Title
Nitrate reduction and the nitrogen cycle in archaea.
  Journal
Microbiology 150:3527-46 (2004)
Reference
  Authors
Stolz JF, Basu P
  Title
Evolution of nitrate reductase: molecular and structural variations on a common function.
  Journal
Chembiochem 3:198-206 (2002)
Reference
  Authors
Morozkina EV, Zvyagilskaya RA
  Title
Nitrate reductases: structure, functions, and effect of stress factors.
  Journal
Biochemistry (Mosc) 72:1151-60 (2007)
Reference
  Authors
Jetten MS, Niftrik L, Strous M, Kartal B, Keltjens JT, Op den Camp HJ
  Title
Biochemistry and molecular biology of anammox bacteria.
  Journal
Crit Rev Biochem Mol Biol 44:65-84 (2009)
Reference
  Authors
Luesken FA, Wu ML, Op den Camp HJ, Keltjens JT, Stunnenberg H, Francoijs KJ, Strous M, Jetten MS
  Title
Effect of oxygen on the anaerobic methanotroph 'Candidatus Methylomirabilis oxyfera': kinetic and transcriptional analysis.
  Journal
Environ Microbiol 14:1024-34 (2012)

DBGET integrated database retrieval system