KEGG   PATHWAY: rga00910
Entry
rga00910                    Pathway                                
Name
Nitrogen metabolism - Rhizobium gallicum bv. gallicum
Description
The biological process of the nitrogen cycle is a complex interplay among many microorganisms catalyzing different reactions, where nitrogen is found in various oxidation states ranging from +5 in nitrate to -3 in ammonia. 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 amino acids and other vital compounds. The ability of fixing atmospheric nitrogen by the nitrogenase enzyme complex is present in restricted prokaryotes (diazotrophs). The other reduction pathways are assimilatory nitrate reduction [MD:M00531] and dissimilatory nitrate reduction [MD:M00530] both for conversion to ammonia, and denitrification [MD:M00529]. Denitrification is a respiration in which nitrate or nitrite is reduced as a terminal electron acceptor under low oxygen or anoxic conditions, producing gaseous nitrogen compounds (N2, NO and N2O) to the atmosphere. The two oxidation pathways are nitrification [MD:M00528] and anaerobic ammonium oxidation (anammox) [MD:M00973]. Nitrification is the oxidation of ammonia (NH3) with oxygen into nitrite followed by the oxidation of nitrite into nitrate. The first step is performed by ammonia-oxidizing microorganisms (e.g., Nitrosomonas and Nitrosococcus) and the second step by nitrite-oxidizing microorganisms (e.g., Nitrobacter). Anammox is a biochemical process of oxidizing ammonium (NH4+) into dinitrogen gas (N2) using nitrite as an electron acceptor. It occurs in the anammoxosome, a membrane bound compartment inside the cytoplasm, of anammox bacteria (e.g., Planctomycetes).
Class
Metabolism; Energy metabolism
Pathway map
rga00910  Nitrogen metabolism
rga00910

Module
rga_M00175  Nitrogen fixation, nitrogen => ammonia [PATH:rga00910]
rga_M00529  Denitrification, nitrate => nitrogen [PATH:rga00910]
rga_M00531  Assimilatory nitrate reduction, nitrate => ammonia [PATH:rga00910]
Other DBs
GO: 0006807
Organism
Rhizobium gallicum bv. gallicum [GN:rga]
Gene
RGR602_PC00261  amiF; formamidase [KO:K01455] [EC:3.5.1.49]
RGR602_PC01450  nitrate/nitrite ABC transporter permease NarK-like protein [KO:K02575]
RGR602_PC01444  nrtA; nitrate ABC transporter substrate-binding protein NrtA [KO:K15576]
RGR602_PC01445  nrtB; nitrate ABC transporter permease protein NrtB [KO:K15577]
RGR602_PC01446  nrtCD; nitrate ABC transporter ATP-binding protein NrtCD [KO:K15578] [EC:7.3.2.4]
RGR602_PC02142  napA; nitrate reductase catalytic subunit NapA [KO:K02567] [EC:1.9.6.1]
RGR602_PC02141  napB; nitrate reductase cytochrome c-type subunit NapB [KO:K02568]
RGR602_PC01453  nasA; nitrate reductase [KO:K00372] [EC:1.7.99.-]
RGR602_PC01451  nirB; nitrite reductase (NAD(P)H) large subunit NirB [KO:K26139] [EC:1.7.1.4]
RGR602_PC01452  nirD; nitrate reductase (NAD(P)H) large subunit NirD [KO:K26138] [EC:1.7.1.4]
RGR602_PC02109  nirK; copper-containing nitrite reductase (NO-forming) [KO:K00368] [EC:1.7.2.1]
RGR602_PC02100  norB; nitric oxide reductase (cytochrome c) subunit B [KO:K04561] [EC:1.7.2.5]
RGR602_PC02099  norC; nitric oxide reductase (cytochrome c) subunit C [KO:K02305]
RGR602_PC02131  nosZ; nitrous oxide reductase [KO:K00376] [EC:1.7.2.4]
RGR602_PB00284  nifD; nitrogenase iron-molybdenum protein alpha chain NifD [KO:K02586] [EC:1.18.6.1]
RGR602_PB00285  nifK; nitrogenase iron-molybdenum protein beta chain NifK [KO:K02591] [EC:1.18.6.1]
RGR602_PB00283  nifH; nitrogenase iron protein NifH [KO:K02588]
RGR602_CH00543  2-nitropropane dioxygenase protein [KO:K00459] [EC:1.13.12.16]
RGR602_CH04029  gdhB; NAD-specific glutamate dehydrogenase [KO:K15371] [EC:1.4.1.2]
RGR602_PB00366  glutamate dehydrogenase protein [KO:K00261] [EC:1.4.1.3]
RGR602_CH02538  glutamine synthetase catalytic domain protein [KO:K01915] [EC:6.3.1.2]
RGR602_CH00205  glnII; glutamine synthetase 2 [KO:K01915] [EC:6.3.1.2]
RGR602_CH01894  glnA; glutamine synthetase 1 [KO:K01915] [EC:6.3.1.2]
RGR602_CH01240  glutamine synthetase GlnA-like protein [KO:K01915] [EC:6.3.1.2]
RGR602_CH00764  glutamine synthetase GlnA-like protein [KO:K01915] [EC:6.3.1.2]
RGR602_PC01860  glnT; glutamine synthetase 3 [KO:K01915] [EC:6.3.1.2]
RGR602_CH03464  gltB; glutamate synthase (NADPH) large subunit [KO:K00265] [EC:1.4.1.13]
RGR602_CH03462  gltD; glutamate synthase (NADPH) small subunit [KO:K00266] [EC:1.4.1.13]
RGR602_PC00626  cynT; carbonic anhydrase [KO:K01673] [EC:4.2.1.1]
RGR602_CH04027  carbonic anhydrase protein [KO:K01673] [EC:4.2.1.1]
RGR602_PB00177  carbonic anhydrase protein [KO:K01674] [EC:4.2.1.1]
Compound
C00007  Oxygen
C00011  CO2
C00014  Ammonia
C00025  L-Glutamate
C00058  Formate
C00064  L-Glutamine
C00088  Nitrite
C00169  Carbamoyl phosphate
C00192  Hydroxylamine
C00244  Nitrate
C00288  HCO3-
C00488  Formamide
C00533  Nitric oxide
C00697  Nitrogen
C00726  Nitrile
C00887  Nitrous oxide
C01417  Cyanate
C01563  Carbamate
C05361  Hydrazine
C06058  Nitroalkane
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)
DOI:10.1099/mic.0.26603-0
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)
DOI:10.1186/1471-2148-7-55
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)
DOI:10.1016/S0005-2728(00)00171-7
Reference
  Authors
Cabello P, Roldan MD, Moreno-Vivian C
  Title
Nitrate reduction and the nitrogen cycle in archaea.
  Journal
Microbiology 150:3527-46 (2004)
DOI:10.1099/mic.0.27303-0
Reference
  Authors
Stolz JF, Basu P
  Title
Evolution of nitrate reductase: molecular and structural variations on a common function.
  Journal
Reference
  Authors
Morozkina EV, Zvyagilskaya RA
  Title
Nitrate reductases: structure, functions, and effect of stress factors.
  Journal
Biochemistry (Mosc) 72:1151-60 (2007)
DOI:10.1134/S0006297907100124
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)
DOI:10.1080/10409230902722783
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)
DOI:10.1111/j.1462-2920.2011.02682.x
Reference
  Authors
Daims H, Lebedeva EV, Pjevac P, Han P, Herbold C, Albertsen M, Jehmlich N, Palatinszky M, Vierheilig J, Bulaev A, Kirkegaard RH, von Bergen M, Rattei T, Bendinger B, Nielsen PH, Wagner M
  Title
Complete nitrification by Nitrospira bacteria.
  Journal
Nature 528:504-9 (2015)
DOI:10.1038/nature16461
Reference
  Authors
van Kessel MA, Speth DR, Albertsen M, Nielsen PH, Op den Camp HJ, Kartal B, Jetten MS, Lucker S
  Title
Complete nitrification by a single microorganism.
  Journal
Nature 528:555-9 (2015)
DOI:10.1038/nature16459
Related
pathway
rga00220  Arginine biosynthesis
rga00250  Alanine, aspartate and glutamate metabolism
rga00460  Cyanoamino acid metabolism
rga00630  Glyoxylate and dicarboxylate metabolism
rga00680  Methane metabolism
rga00720  Other carbon fixation pathways
KO pathway
ko00910   
LinkDB

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