KEGG   PATHWAY: dov00680
Entry
dov00680                    Pathway                                
Name
Methane metabolism - Desulfosarcina ovata subsp. sediminis
Description
Methane is metabolized principally by methanotrophs and methanogens in the global carbon cycle. Methanotrophs consume methane as the only source of carbon, while methanogens produce methane as a metabolic byproduct. Methylotrophs, which are microorganisms that can obtain energy for growth by oxidizing one-carbon compounds, such as methanol and methane, are situated between methanotrophs and methanogens. Methanogens can obtain energy for growth by converting a limited number of substrates to methane under anaerobic conditions. Three types of methanogenic pathways are known: CO2 to methane [MD:M00567], methanol to methane [MD:M00356], and acetate to methane [MD:M00357]. Methanogens use 2-mercaptoethanesulfonate (CoM; coenzyme M) as the terminal methyl carrier in methanogenesis and have four enzymes for CoM biosynthesis [MD:M00358]. Coenzyme B-Coenzyme M heterodisulfide reductase (Hdr), requiring for the final reaction steps of methanogenic pathway, is divided into two types: cytoplasmic HdrABC in most methanogens and membrane-bound HdrED in Methanosarcina species. In methanotrophs and methyltrophs methane is oxidized to form formaldehyde, which is at the diverging point for further oxidation to CO2 for energy source and assimilation for biosynthesis. There are three pathways that convert formaldehyde to C2 or C3 compounds: serine pathway [MD:M00346], ribulose monophosphate pathway [MD:M00345], and xylulose monophosphate pathway [MD:M00344]. The first two pathways are found in prokaryotes and the third is found in yeast. As a special case of methylotrophs, various amines can be used as carbon sources in trimethylamine metabolism [MD:M00563].
Class
Metabolism; Energy metabolism
Pathway map
dov00680  Methane metabolism
dov00680

Module
dov_M00020  Serine biosynthesis, glycerate-3P => serine [PATH:dov00680]
Other DBs
GO: 0015947
Organism
Desulfosarcina ovata subsp. sediminis [GN:dov]
Gene
DSCO28_57360  hypothetical protein [KO:K00124]
DSCO28_65560  dehydrogenase [KO:K22516] [EC:1.17.98.3 1.8.98.6]
DSCO28_48980  dehydrogenase [KO:K22516] [EC:1.17.98.3 1.8.98.6]
DSCO28_26720  dehydrogenase [KO:K22516] [EC:1.17.98.3 1.8.98.6]
DSCO28_27580  hypothetical protein [KO:K00125] [EC:1.17.98.3 1.8.98.6]
DSCO28_27830  4Fe-4S ferredoxin [KO:K00125] [EC:1.17.98.3 1.8.98.6]
DSCO28_36090  4Fe-4S ferredoxin [KO:K00125] [EC:1.17.98.3 1.8.98.6]
DSCO28_50930  sfrB; NADPH-Fe(3+) oxidoreductase subunit beta [KO:K15022] [EC:1.17.1.10]
DSCO28_46070  NADH dehydrogenase [KO:K15022] [EC:1.17.1.10]
DSCO28_60770  hypothetical protein [KO:K15022] [EC:1.17.1.10]
DSCO28_53000  hypothetical protein [KO:K15022] [EC:1.17.1.10]
DSCO28_59720  corrinoid/iron-sulfur protein large subunit [KO:K00197] [EC:2.1.1.245]
DSCO28_59750  hypothetical protein [KO:K00194] [EC:2.1.1.245]
DSCO28_32360  cooS_1; carbon-monoxide dehydrogenase catalytic subunit [KO:K00198] [EC:1.2.7.4]
DSCO28_44770  hypothetical protein [KO:K00198] [EC:1.2.7.4]
DSCO28_59740  cooS_3; carbon-monoxide dehydrogenase catalytic subunit [KO:K00198] [EC:1.2.7.4]
DSCO28_36040  cooS_2; carbon-monoxide dehydrogenase catalytic subunit [KO:K00198] [EC:1.2.7.4]
DSCO28_32370  4Fe-4S ferredoxin [KO:K00196]
DSCO28_44760  cooF; carbon monoxide dehydrogenase [KO:K00196]
DSCO28_42680  hypothetical protein [KO:K00196]
DSCO28_49890  glyA; serine hydroxymethyltransferase [KO:K00600] [EC:2.1.2.1]
DSCO28_41950  hydroxypyruvate reductase [KO:K11529] [EC:2.7.1.165]
DSCO28_34920  eno; enolase [KO:K01689] [EC:4.2.1.11]
DSCO28_00250  hypothetical protein [KO:K00024] [EC:1.1.1.37]
DSCO28_06510  mdh; malate dehydrogenase [KO:K00024] [EC:1.1.1.37]
DSCO28_45410  fbaA_2; class II fructose-bisphosphate aldolase [KO:K01624] [EC:4.1.2.13]
DSCO28_11820  ketose-bisphosphate aldolase [KO:K01624] [EC:4.1.2.13]
DSCO28_11780  pfkA; ATP-dependent 6-phosphofructokinase [KO:K00850] [EC:2.7.1.11]
DSCO28_28530  formylmethanofuran dehydrogenase subunit E [KO:K11261] [EC:1.2.7.12]
DSCO28_09250  hypothetical protein [KO:K11261] [EC:1.2.7.12]
DSCO28_47620  NADP oxidoreductase [KO:K00441] [EC:1.12.98.1]
DSCO28_66090  hypothetical protein [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_27590  hypothetical protein [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_20160  hypothetical protein [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_20230  hypothetical protein [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_11030  hypothetical protein [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_27560  hypothetical protein [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_39880  4Fe-4S ferredoxin [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_36070  4Fe-4S ferredoxin [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_32240  hypothetical protein [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_05430  hypothetical protein [KO:K03388] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_27610  heterodisulfide reductase subunit B [KO:K03389] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_20260  heterodisulfide reductase subunit B [KO:K03389] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_27600  hypothetical protein [KO:K03390] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_20250  hdrC; heterodisulfide reductase subunit C [KO:K03390] [EC:1.8.7.3 1.8.98.4 1.8.98.5 1.8.98.6]
DSCO28_20240  hypothetical protein [KO:K14127] [EC:1.12.99.- 1.8.98.5 1.8.98.6]
DSCO28_66100  hypothetical protein [KO:K14127] [EC:1.12.99.- 1.8.98.5 1.8.98.6]
DSCO28_39870  methyl-viologen-reducing hydrogenase subunit delta [KO:K14127] [EC:1.12.99.- 1.8.98.5 1.8.98.6]
DSCO28_14250  hypothetical protein [KO:K14127] [EC:1.12.99.- 1.8.98.5 1.8.98.6]
DSCO28_27570  hdrG_1; heterodisulfide reductase subunit D [KO:K14127] [EC:1.12.99.- 1.8.98.5 1.8.98.6]
DSCO28_27640  hypothetical protein [KO:K14127] [EC:1.12.99.- 1.8.98.5 1.8.98.6]
DSCO28_36080  hdrG_2; heterodisulfide reductase subunit D [KO:K14127] [EC:1.12.99.- 1.8.98.5 1.8.98.6]
DSCO28_11040  hypothetical protein [KO:K14127] [EC:1.12.99.- 1.8.98.5 1.8.98.6]
DSCO28_20170  hypothetical protein [KO:K14127] [EC:1.12.99.- 1.8.98.5 1.8.98.6]
DSCO28_26680  acsA_1; acetyl-coenzyme A synthetase [KO:K01895] [EC:6.2.1.1]
DSCO28_26710  acsA_2; acetyl-coenzyme A synthetase [KO:K01895] [EC:6.2.1.1]
DSCO28_06590  acs; acetyl-coenzyme A synthetase [KO:K01895] [EC:6.2.1.1]
DSCO28_15370  AMP-binding protein [KO:K01895] [EC:6.2.1.1]
DSCO28_46640  acetate--CoA ligase [KO:K01895] [EC:6.2.1.1]
DSCO28_65390  hypothetical protein [KO:K01007] [EC:2.7.9.2]
DSCO28_65440  hypothetical protein [KO:K01007] [EC:2.7.9.2]
DSCO28_01590  phosphoenolpyruvate synthase [KO:K01007] [EC:2.7.9.2]
DSCO28_37550  hypothetical protein [KO:K01834] [EC:5.4.2.11]
DSCO28_51790  gpmI; 2,3-bisphosphoglycerate-independent phosphoglycerate mutase [KO:K15633] [EC:5.4.2.12]
DSCO28_57970  hypothetical protein [KO:K00058] [EC:1.1.1.95 1.1.1.399]
DSCO28_05640  serA_1; D-3-phosphoglycerate dehydrogenase [KO:K00058] [EC:1.1.1.95 1.1.1.399]
DSCO28_60680  serA_2; D-3-phosphoglycerate dehydrogenase [KO:K00058] [EC:1.1.1.95 1.1.1.399]
DSCO28_35370  serC; phosphoserine aminotransferase [KO:K00831] [EC:2.6.1.52]
DSCO28_30470  thrH; phosphoserine phosphatase ThrH [KO:K02203] [EC:3.1.3.3 2.7.1.39]
DSCO28_70170  mtbC_2; dimethylamine corrinoid protein [KO:K14084]
DSCO28_26940  mtbC_1; dimethylamine corrinoid protein [KO:K14084]
DSCO28_45510  aminotransferase [KO:K19793] [EC:2.6.1.108]
Compound
C00011  CO2
C00022  Pyruvate
C00024  Acetyl-CoA
C00033  Acetate
C00036  Oxaloacetate
C00037  Glycine
C00048  Glyoxylate
C00058  Formate
C00065  L-Serine
C00067  Formaldehyde
C00074  Phosphoenolpyruvate
C00082  L-Tyrosine
C00085  D-Fructose 6-phosphate
C00101  Tetrahydrofolate
C00111  Glycerone phosphate
C00118  D-Glyceraldehyde 3-phosphate
C00132  Methanol
C00143  5,10-Methylenetetrahydrofolate
C00149  (S)-Malate
C00168  Hydroxypyruvate
C00184  Glycerone
C00197  3-Phospho-D-glycerate
C00199  D-Ribulose 5-phosphate
C00218  Methylamine
C00227  Acetyl phosphate
C00231  D-Xylulose 5-phosphate
C00237  CO
C00258  D-Glycerate
C00322  2-Oxoadipate
C00354  D-Fructose 1,6-bisphosphate
C00483  Tyramine
C00543  Dimethylamine
C00565  Trimethylamine
C00593  Sulfoacetaldehyde
C00631  2-Phospho-D-glycerate
C00862  Methanofuran
C00876  Coenzyme F420
C01001  Formylmethanofuran
C01005  O-Phospho-L-serine
C01031  S-Formylglutathione
C01046  N-Methyl-L-glutamate
C01080  Reduced coenzyme F420
C01104  Trimethylamine N-oxide
C01217  5,6,7,8-Tetrahydromethanopterin
C01274  5-Formyl-5,6,7,8-tetrahydromethanopterin
C01438  Methane
C03232  3-Phosphonooxypyruvate
C03576  Coenzyme M
C03920  2-(Methylthio)ethanesulfonate
C04330  5,10-Methenyltetrahydromethanopterin
C04348  L-Malyl-CoA
C04377  5,10-Methylenetetrahydromethanopterin
C04488  5-Methyl-5,6,7,8-tetrahydromethanopterin
C04628  Coenzyme B
C04732  5-Amino-6-(1-D-ribitylamino)uracil
C04832  Coenzyme M 7-mercaptoheptanoylthreonine-phosphate heterodisulfide
C05528  3-Sulfopyruvate
C06019  D-arabino-Hex-3-ulose 6-phosphate
C11536  (2R)-O-Phospho-3-sulfolactate
C11537  (2R)-3-Sulfolactate
C14180  S-(Hydroxymethyl)glutathione
C16583  (R)-(Homo)2-citrate
C16588  2-Oxopimelate
C16589  2-Oxosuberate
C16590  7-Oxoheptanoic acid
C16593  7-Mercaptoheptanoic acid
C16594  7-Mercaptoheptanoylthreonine
C16597  (-)-threo-Iso(homo)2-citrate
C16598  (R)-(Homo)3-citrate
C16600  (-)-threo-Iso(homo)3-citrate
C18799  5-Methyl-H4SPT
C18802  Tetrahydrosarcinapterin
C19151  Coenzyme F420-3
C19152  Coenzyme F420-1
C19153  Coenzyme F420-0
C19154  7,8-Didemethyl-8-hydroxy-5-deazariboflavin
C19155  (2S)-Lactyl-2-diphospho-5'-guanosine
C19156  (2S)-2-Phospholactate
C20581  cis-(Homo)2-aconitate
C20582  cis-(Homo)3-aconitate
C20926  gamma-Glutamyltyramine
C20954  (5-Formylfuran-3-yl)methyl phosphate
C21068  [5-(Aminomethyl)furan-3-yl]methyl phosphate
C21069  [5-(Aminomethyl)furan-3-yl]methyl diphosphate
C21070  (4-{4-[2-(gamma-L-Glutamylamino)ethyl]phenoxymethyl}furan-2-yl)methanamine
C21971  5-Amino-5-(4-hydroxybenzyl)-6-(D-ribitylimino)-5,6-dihydrouracil
C22277  Dehydro coenzyme F420-0
C22297  Enolpyruvoyl-2-diphospho-5'-guanosine
Reference
  Authors
Graham DE, Xu H, White RH
  Title
Identification of coenzyme M biosynthetic phosphosulfolactate synthase: a new family of sulfonate-biosynthesizing enzymes.
  Journal
J Biol Chem 277:13421-9 (2002)
DOI:10.1074/jbc.M201011200
Reference
  Authors
Deppenmeier U
  Title
The membrane-bound electron transport system of Methanosarcina species.
  Journal
J Bioenerg Biomembr 36:55-64 (2004)
DOI:10.1023/B:JOBB.0000019598.64642.97
Reference
  Authors
Hallam SJ, Putnam N, Preston CM, Detter JC, Rokhsar D, Richardson PM, DeLong EF
  Title
Reverse methanogenesis: testing the hypothesis with environmental genomics.
  Journal
Science 305:1457-62 (2004)
DOI:10.1126/science.1100025
Reference
  Authors
Welander PV, Metcalf WW
  Title
Loss of the mtr operon in Methanosarcina blocks growth on methanol, but not methanogenesis, and reveals an unknown methanogenic pathway.
  Journal
Proc Natl Acad Sci U S A 102:10664-9 (2005)
DOI:10.1073/pnas.0502623102
Reference
  Authors
Yurimoto H, Kato N, Sakai Y
  Title
Assimilation, dissimilation, and detoxification of formaldehyde, a central metabolic intermediate of methylotrophic metabolism.
  Journal
Chem Rec 5:367-75 (2005)
DOI:10.1002/tcr.20056
Reference
  Authors
Fricke WF, Seedorf H, Henne A, Kruer M, Liesegang H, Hedderich R, Gottschalk G, Thauer RK.
  Title
The genome sequence of Methanosphaera stadtmanae reveals why this human intestinal archaeon is restricted to methanol and H2 for methane formation and ATP synthesis.
  Journal
J Bacteriol 188:642-58 (2006)
DOI:10.1128/JB.188.2.642-658.2006
Reference
  Authors
Kato N, Yurimoto H, Thauer RK
  Title
The physiological role of the ribulose monophosphate pathway in bacteria and archaea.
  Journal
Biosci Biotechnol Biochem 70:10-21 (2006)
DOI:10.1271/bbb.70.10
Reference
  Authors
Thauer RK, Kaster AK, Seedorf H, Buckel W, Hedderich R
  Title
Methanogenic archaea: ecologically relevant differences in energy conservation.
  Journal
Nat Rev Microbiol 6:579-91 (2008)
DOI:10.1038/nrmicro1931
Reference
  Authors
Liffourrena AS, Salvano MA, Lucchesi GI
  Title
Pseudomonas putida A ATCC 12633 oxidizes trimethylamine aerobically via two different pathways.
  Journal
Arch Microbiol 192:471-6 (2010)
DOI:10.1007/s00203-010-0577-5
Related
pathway
dov00010  Glycolysis / Gluconeogenesis
dov00030  Pentose phosphate pathway
dov00260  Glycine, serine and threonine metabolism
dov00300  Lysine biosynthesis
dov00630  Glyoxylate and dicarboxylate metabolism
dov00720  Other carbon fixation pathways
dov00740  Riboflavin metabolism
dov00790  Folate biosynthesis
dov00910  Nitrogen metabolism
dov00920  Sulfur metabolism
KO pathway
ko00680   
LinkDB

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