KEGG   PATHWAY: mwo00720
Entry
mwo00720                    Pathway                                
Name
Other carbon fixation pathways - Methanothermobacter wolfeii
Description
Carbon fixation is an important pathway for autotrophs living in various environments. Plants and cyanobacteria fix CO2 as organic compounds using solar energy mainly by the reductive pentose phosphate cycle (also called Calvin cycle, Calvin-Benson cycle, or Calvin-Benson-Bassham cycle) [MD:M00165]. There are, at least, five additional carbon fixation pathways known to exist in autotrophic bacteria and archaea, which differ in reducing compounds, energy source, and oxygen sensitivity of enzymes. (i) The reductive citric acid cycle (Arnon-Buchanan cycle) [MD:M00173] is found in microaerophiles and anaerobes, such as green sulfur bacteria. In one complete turn of this cycle, four molecules of CO2 are fixed by the enzymes that are sensitive to oxygen, resulting in the production of one molecule of oxaloacetate, which is itself an intermediate of the cycle. (ii) The reductive acetyl-CoA pathway (Wood-Ljungdahl pathway) [MD:M00377] is found in strictly anaerobic bacteria and archaea (Proteobacteria, Planctomycetes, Spirochaetes, and Euryarchaeota), some of which are methane-forming. A bifunctional enzyme, carbon monoxide dehydrogenase/acetyl-CoA synthase, catalyzes the reactions from CO2 to CO and from CO2 to a methyl group, and then to generate acetyl-CoA. (iii) The 3-hydroxypropionate bicycle [MD:M00376] is found in some green non-sulphur bacteria of the family Chloroflexaceae. In one complete turn of this bicycle, three molecules of bicarbonate are converted into one molecule of pyruvate. In addition, this bicycle provides the secondary benefit of useful intermediates for biosynthesis: acetyl-CoA, glyoxylate, and succinyl-CoA. (iv) The hydroxypropionate-hydroxybutyrate cycle [MD:M00375] is found in aerobic Crenarchaeota, Acidianus, Metallosphaera, and Sulfolobales. Some of the intermediates and the carboxylation reactions are the same as in the 3-hydroxypropionate bicycle. One complete turn of this cycle generates two molecules of acetyl-CoA, one of which is reutilized in the the cycle and the other is removed for cell material biosynthesis. (v) The dicarboxylate-hydroxybutyrate cycle [MD:M00374] was named after its intermediates: succinate (a kind of dicarboxylate) and hydroxybutyrate. This cycle has been found only in Ignicoccus hospitals, a strictly anaerobic hyperthermophilic archaea. Recent genome study suggests that this cycle may exist in Desulfurococcales (to which Ignicoccus belongs) and Thermoproteales (a taxon close to the origin of archaea). The first half of the cycle, from acetyl-CoA to succinate-CoA, corresponds to the reductive citric acid cycle and the latter half of the cycle, from succinate-CoA to two molecules of acetyl-CoA, corresponds to the hydroxypropionate-hydroxybutyrate cycle.
Class
Metabolism; Energy metabolism
Pathway map
mwo00720  Other carbon fixation pathways
mwo00720

Module
mwo_M00620  Incomplete reductive citrate cycle, acetyl-CoA => oxoglutarate [PATH:mwo00720]
Other DBs
GO: 0015977
Organism
Methanothermobacter wolfeii [GN:mwo]
Gene
MWSIV6_0279  porA; Pyruvate synthase subunit PorA [KO:K00169] [EC:1.2.7.1]
MWSIV6_0278  porB; Pyruvate synthase subunit PorB [KO:K00170] [EC:1.2.7.1]
MWSIV6_0281  porC; Pyruvate synthase subunit PorC [KO:K00172] [EC:1.2.7.1]
MWSIV6_0280  porD; Pyruvate synthase subunit PorD [KO:K00171] [EC:1.2.7.1]
MWSIV6_1509  ppsA3; putative phosphoenolpyruvate synthase [KO:K01007] [EC:2.7.9.2]
MWSIV6_0843  ppsA1; putative phosphoenolpyruvate synthase [KO:K01007] [EC:2.7.9.2]
MWSIV6_1332  ppcA; Phosphoenolpyruvate carboxylase [KO:K01595] [EC:4.1.1.31]
MWSIV6_0452  pycA; Pyruvate carboxylase subunit A [KO:K01959] [EC:6.4.1.1]
MWSIV6_1499  pycB; Pyruvate carboxylase subunit B [KO:K01960] [EC:6.4.1.1]
MWSIV6_0603  mdh; Malate dehydrogenase {ECO:0000255 [KO:K00024] [EC:1.1.1.37]
MWSIV6_1353  Fumarate hydratase, class I related protein {ECO:0000313 [KO:K01677] [EC:4.2.1.2]
MWSIV6_0275  putative L(+)-tartrate dehydratase subunit alpha {ECO:0000250 [KO:K01677] [EC:4.2.1.2]
MWSIV6_1507  Fumarate hydratase {ECO:0000313 [KO:K01678] [EC:4.2.1.2]
MWSIV6_0445  putative L(+)-tartrate dehydratase subunit beta {ECO:0000250 [KO:K01678] [EC:4.2.1.2]
MWSIV6_0043  tfrA; Fumarate reductase (CoM/CoB) subunit A [KO:K18209] [EC:1.3.4.1]
MWSIV6_0381  tfrB; Fumarate reductase (CoM/CoB) subunit B {ECO:0000305} [KO:K18210] [EC:1.3.4.1]
MWSIV6_0927  sucD; Succinyl-CoA ligase [ADP-forming] subunit alpha [KO:K01902] [EC:6.2.1.5]
MWSIV6_1422  sucC; Succinyl-CoA ligase [ADP-forming] subunit beta {ECO:0000255 [KO:K01903] [EC:6.2.1.5]
MWSIV6_1169  putative protein MTH_793 [KO:K00626] [EC:2.3.1.9]
MWSIV6_1419  korA3; 2-oxoglutarate synthase subunit KorA [KO:K00174] [EC:1.2.7.3 1.2.7.11]
MWSIV6_0901  korA1; 2-oxoglutarate synthase subunit KorA [KO:K00174] [EC:1.2.7.3 1.2.7.11]
MWSIV6_1420  korB3; 2-oxoglutarate synthase subunit KorB [KO:K00175] [EC:1.2.7.3 1.2.7.11]
MWSIV6_0902  korB1; 2-oxoglutarate oxidoreductase subunit KorB [KO:K00175] [EC:1.2.7.3 1.2.7.11]
MWSIV6_1421  korC; 2-oxoglutarate synthase subunit KorC [KO:K00177] [EC:1.2.7.3]
MWSIV6_1418  putative ferredoxin MJ0146 [KO:K00176] [EC:1.2.7.3]
MWSIV6_0093  fdhA3; Formate dehydrogenase subunit alpha [KO:K22015] [EC:1.17.98.4 1.17.98.-]
MWSIV6_0277  putative ferredoxin MJ0265 [KO:K00196]
MWSIV6_0985  putative protein MJ0264 [KO:K00196]
MWSIV6_0276  putative ferredoxin MJ0155 [KO:K00196]
MWSIV6_0254  cdhE; Acetyl-CoA decarbonylase/synthase complex subunit gamma {ECO:0000255 [KO:K00197] [EC:2.1.1.245]
MWSIV6_0253  cdhD; Acetyl-CoA decarbonylase/synthase complex subunit delta {ECO:0000255 [KO:K00194] [EC:2.1.1.245]
MWSIV6_0149  acsA1; Acetyl-coenzyme A synthetase [KO:K01895] [EC:6.2.1.1]
MWSIV6_0629  acsA5; Acetyl-coenzyme A synthetase [KO:K01895] [EC:6.2.1.1]
MWSIV6_1078  Acsm3; Acyl-coenzyme A synthetase ACSM3, mitochondrial [KO:K01895] [EC:6.2.1.1]
Compound
C00011  CO2
C00022  Pyruvate
C00024  Acetyl-CoA
C00026  2-Oxoglutarate
C00033  Acetate
C00036  Oxaloacetate
C00042  Succinate
C00048  Glyoxylate
C00058  Formate
C00074  Phosphoenolpyruvate
C00083  Malonyl-CoA
C00091  Succinyl-CoA
C00100  Propanoyl-CoA
C00101  Tetrahydrofolate
C00122  Fumarate
C00143  5,10-Methylenetetrahydrofolate
C00149  (S)-Malate
C00158  Citrate
C00222  3-Oxopropanoate
C00227  Acetyl phosphate
C00232  Succinate semialdehyde
C00234  10-Formyltetrahydrofolate
C00237  CO
C00288  HCO3-
C00311  Isocitrate
C00332  Acetoacetyl-CoA
C00417  cis-Aconitate
C00440  5-Methyltetrahydrofolate
C00445  5,10-Methenyltetrahydrofolate
C00566  (3S)-Citryl-CoA
C00683  (S)-Methylmalonyl-CoA
C00877  Crotonoyl-CoA
C00894  Propenoyl-CoA
C00989  4-Hydroxybutanoic acid
C01011  (3S)-Citramalyl-CoA
C01013  3-Hydroxypropanoate
C01144  (S)-3-Hydroxybutanoyl-CoA
C01213  (R)-Methylmalonyl-CoA
C04348  L-Malyl-CoA
C05668  3-Hydroxypropionyl-CoA
C06027  L-erythro-3-Methylmalyl-CoA
C06028  2-Methylfumaryl-CoA
C11062  4-Hydroxybutyryl-CoA
C18323  3-Methylfumaryl-CoA
Reference
  Authors
Zarzycki J, Brecht V, Muller M, Fuchs G
  Title
Identifying the missing steps of the autotrophic 3-hydroxypropionate CO2 fixation cycle in Chloroflexus aurantiacus.
  Journal
Proc Natl Acad Sci U S A 106:21317-22 (2009)
DOI:10.1073/pnas.0908356106
Reference
  Authors
Teufel R, Kung JW, Kockelkorn D, Alber BE, Fuchs G
  Title
3-hydroxypropionyl-coenzyme A dehydratase and acryloyl-coenzyme A reductase, enzymes of the autotrophic 3-hydroxypropionate/4-hydroxybutyrate cycle in the Sulfolobales.
  Journal
J Bacteriol 191:4572-81 (2009)
DOI:10.1128/JB.00068-09
Reference
  Authors
Huber H, Gallenberger M, Jahn U, Eylert E, Berg IA, Kockelkorn D, Eisenreich W, Fuchs G
  Title
A dicarboxylate/4-hydroxybutyrate autotrophic carbon assimilation cycle in the hyperthermophilic Archaeum Ignicoccus hospitalis.
  Journal
Proc Natl Acad Sci U S A 105:7851-6 (2008)
DOI:10.1073/pnas.0801043105
Reference
  Authors
Hugler M, Wirsen CO, Fuchs G, Taylor CD, Sievert SM
  Title
Evidence for autotrophic CO2 fixation via the reductive tricarboxylic acid cycle by members of the epsilon subdivision of proteobacteria.
  Journal
J Bacteriol 187:3020-7 (2005)
DOI:10.1128/JB.187.9.3020-3027.2005
Reference
  Authors
Seravalli J, Kumar M, Ragsdale SW
  Title
Rapid kinetic studies of acetyl-CoA synthesis: evidence supporting the catalytic intermediacy of a paramagnetic NiFeC species in the autotrophic Wood-Ljungdahl pathway.
  Journal
Biochemistry 41:1807-19 (2002)
DOI:10.1021/bi011687i
Reference
PMID:3096193
  Authors
Ljungdahl LG
  Title
The autotrophic pathway of acetate synthesis in acetogenic bacteria.
  Journal
Annu Rev Microbiol 40:415-50 (1986)
DOI:10.1146/annurev.mi.40.100186.002215
Related
pathway
mwo00710  Carbon fixation by Calvin cycle
KO pathway
ko00720   
LinkDB

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