KEGG   PATHWAY: thim00920
Entry
thim00920                   Pathway                                
Name
Sulfur metabolism - Thiocapsa sp. M50B4
Description
Sulfur is an essential element for life and the metabolism of organic sulfur compounds plays an important role in the global sulfur cycle. Sulfur occurs in various oxidation states ranging from +6 in sulfate to -2 in sulfide (H2S). Sulfate reduction can occur in both an energy consuming assimilatory pathway and an energy producing dissimilatory pathway. The assimilatory pathway, which is found in a wide range of organisms, produces reduced sulfur compounds for the biosynthesis of S-containing amino acids and does not lead to direct excretion of sulfide. In the dissimilatory pathway, which is restricted to obligatory anaerobic bacterial and archaeal lineages, sulfate (or sulfur) is the terminal electron acceptor of the respiratory chain producing large quantities of inorganic sulfide. Both pathways start from the activation of sulfate by reaction with ATP to form adenylyl sulfate (APS). In the assimilatory pathway [MD:M00176] APS is converted to 3'-phosphoadenylyl sulfate (PAPS) and then reduced to sulfite, and sulfite is further reduced to sulfide by the assimilatory sulfite reductase. In the dissimilatory pathway [MD:M00596] APS is directly reduced to sulfite, and sulfite is further reduced to sulfide by the dissimilatory sulfite reductase. The capacity for oxidation of sulfur is quite widespread among bacteria and archaea, comprising phototrophs and chemolithoautotrophs. The SOX (sulfur-oxidation) system [MD:M00595] is a well-known sulfur oxidation pathway and is found in both photosynthetic and non-photosynthetic sulfur-oxidizing bacteria. Green sulfur bacteria and purple sulfur bacteria carry out anoxygenic photosynthesis with reduced sulfur compounds such as sulfide and elemental sulfur, as well as thiosulfate (in some species with the SOX system), as the electron donor for photoautotrophic growth. In some chemolithoautotrophic sulfur oxidizers (such as Thiobacillus denitrificans), it has been suggested that dissimilatory sulfur reduction enzymes operate in the reverse direction, forming a sulfur oxidation pathway from sulfite to APS and then to sulfate.
Class
Metabolism; Energy metabolism
Pathway map
thim00920  Sulfur metabolism
thim00920

Module
thim_M00595  Sulfur oxidation, SOX system, thiosulfate => sulfate [PATH:thim00920]
thim_M00596  Dissimilatory sulfate reduction, sulfate => H2S [PATH:thim00920]
thim_M00985  Sulfide oxidation, sulfide => sulfur [PATH:thim00920]
Other DBs
GO: 0006790
Organism
Thiocapsa sp. M50B4 [GN:thim]
Gene
KFB96_03670  sat; sulfate adenylyltransferase [KO:K00958] [EC:2.7.7.4]
KFB96_03805  cysC; adenylyl-sulfate kinase [KO:K00860] [EC:2.7.1.25]
KFB96_04250  adenylyl-sulfate reductase subunit alpha [KO:K00394] [EC:1.8.99.2]
KFB96_04245  aprB; adenylyl-sulfate reductase subunit beta [KO:K00395] [EC:1.8.99.2]
KFB96_10115  4Fe-4S dicluster domain-containing protein [KO:K21308]
KFB96_10110  dimethyl sulfoxide reductase anchor subunit [KO:K21309]
KFB96_04475  soxA; sulfur oxidation c-type cytochrome SoxA [KO:K17222] [EC:2.8.5.2]
KFB96_04480  soxX; sulfur oxidation c-type cytochrome SoxX [KO:K17223] [EC:2.8.5.2]
KFB96_24415  soxY; thiosulfate oxidation carrier protein SoxY [KO:K17226]
KFB96_20840  soxY; thiosulfate oxidation carrier protein SoxY [KO:K17226]
KFB96_24410  soxZ; thiosulfate oxidation carrier complex protein SoxZ [KO:K17227]
KFB96_20845  soxZ; thiosulfate oxidation carrier complex protein SoxZ [KO:K17227]
KFB96_04485  soxB; thiosulfohydrolase SoxB [KO:K17224] [EC:3.1.6.20]
KFB96_10680  dsrA; dissimilatory-type sulfite reductase subunit alpha [KO:K11180] [EC:1.8.1.22]
KFB96_10675  dsrB; dissimilatory-type sulfite reductase subunit beta [KO:K11181] [EC:1.8.1.22]
KFB96_10640  NAD(P)-binding protein [KO:K27196]
KFB96_10650  respiratory nitrate reductase subunit gamma [KO:K27187] [EC:1.8.5.10]
KFB96_10645  (Fe-S)-binding protein [KO:K27188] [EC:1.8.5.10]
KFB96_10635  sulfur reduction protein DsrJ [KO:K27189]
KFB96_10630  4Fe-4S dicluster domain-containing protein [KO:K27190]
KFB96_10625  nrfD; polysulfide reductase NrfD [KO:K27191]
KFB96_09095  FAD-dependent oxidoreductase [KO:K17218] [EC:1.8.5.4]
KFB96_20800  FAD-dependent oxidoreductase [KO:K17218] [EC:1.8.5.4]
KFB96_08655  FCSD flavin-binding domain-containing protein [KO:K17229] [EC:1.8.2.3]
KFB96_08650  cytochrome c4 [KO:K17230]
KFB96_01670  MBL fold metallo-hydrolase [KO:K17725] [EC:1.13.11.18]
KFB96_25750  sulfurtransferase [KO:K01011] [EC:2.8.1.1 2.8.1.2]
KFB96_12175  winged helix-turn-helix transcriptional regulator [KO:K01011] [EC:2.8.1.1 2.8.1.2]
KFB96_20870  cysE; serine O-acetyltransferase [KO:K00640] [EC:2.3.1.30]
KFB96_10130  homoserine O-succinyltransferase [KO:K00651] [EC:2.3.1.46 2.3.1.31]
KFB96_00395  O-succinylhomoserine sulfhydrylase [KO:K10764] [EC:2.5.1.-]
Compound
C00033  Acetate
C00042  Succinate
C00053  3'-Phosphoadenylyl sulfate
C00054  Adenosine 3',5'-bisphosphate
C00059  Sulfate
C00065  L-Serine
C00084  Acetaldehyde
C00087  Sulfur
C00094  Sulfite
C00097  L-Cysteine
C00155  L-Homocysteine
C00224  Adenylyl sulfate
C00245  Taurine
C00263  L-Homoserine
C00283  Hydrogen sulfide
C00320  Thiosulfate
C00409  Methanethiol
C00580  Dimethyl sulfide
C00979  O-Acetyl-L-serine
C01118  O-Succinyl-L-homoserine
C01861  Trithionate
C02084  Tetrathionate
C03920  2-(Methylthio)ethanesulfonate
C04022  S,S-Dimethyl-beta-propiothetin
C08276  3-(Methylthio)propanoate
C11142  Dimethyl sulfone
C11143  Dimethyl sulfoxide
C11145  Methanesulfonic acid
C15521  Alkanesulfonate
C17267  S-Sulfanylglutathione
C19692  Polysulfide
C20870  3-(Methylthio)propanoyl-CoA
C20955  3-(Methylthio)acryloyl-CoA
C22834  Protein-trisulfide
Reference
  Authors
Grein F, Ramos AR, Venceslau SS, Pereira IA
  Title
Unifying concepts in anaerobic respiration: Insights from dissimilatory sulfur metabolism.
  Journal
Biochim Biophys Acta 1827:145-60 (2013)
DOI:10.1016/j.bbabio.2012.09.001
Reference
  Authors
Fauque GD, Barton LL
  Title
Hemoproteins in dissimilatory sulfate- and sulfur-reducing prokaryotes.
  Journal
Adv Microb Physiol 60:1-90 (2012)
DOI:10.1016/B978-0-12-398264-3.00001-2
Reference
  Authors
Sakurai H, Ogawa T, Shiga M, Inoue K
  Title
Inorganic sulfur oxidizing system in green sulfur bacteria.
  Journal
Photosynth Res 104:163-76 (2010)
DOI:10.1007/s11120-010-9531-2
Reference
  Authors
Falkenby LG, Szymanska M, Holkenbrink C, Habicht KS, Andersen JS, Miller M, Frigaard NU
  Title
Quantitative proteomics of Chlorobaculum tepidum: insights into the sulfur metabolism of a phototrophic green sulfur bacterium.
  Journal
FEMS Microbiol Lett 323:142-50 (2011)
DOI:10.1111/j.1574-6968.2011.02370.x
Reference
  Authors
Gregersen LH, Bryant DA, Frigaard NU
  Title
Mechanisms and evolution of oxidative sulfur metabolism in green sulfur bacteria.
  Journal
Front Microbiol 2:116 (2011)
DOI:10.3389/fmicb.2011.00116
Reference
  Authors
Beller HR, Chain PS, Letain TE, Chakicherla A, Larimer FW, Richardson PM, Coleman MA, Wood AP, Kelly DP.
  Title
The genome sequence of the obligately chemolithoautotrophic, facultatively anaerobic bacterium Thiobacillus denitrificans.
  Journal
J Bacteriol 188:1473-88 (2006)
DOI:10.1128/JB.188.4.1473-1488.2006
Reference
PMID:9695921
  Authors
Pott AS, Dahl C
  Title
Sirohaem sulfite reductase and other proteins encoded by genes at the dsr locus of Chromatium vinosum are involved in the oxidation of intracellular sulfur.
  Journal
Microbiology 144 ( Pt 7):1881-94 (1998)
DOI:10.1099/00221287-144-7-1881
Reference
  Authors
Frigaard NU, Dahl C
  Title
Sulfur metabolism in phototrophic sulfur bacteria.
  Journal
Adv Microb Physiol 54:103-200 (2009)
DOI:10.1016/S0065-2911(08)00002-7
Related
pathway
thim00260  Glycine, serine and threonine metabolism
thim00270  Cysteine and methionine metabolism
thim00680  Methane metabolism
thim00720  Other carbon fixation pathways
KO pathway
ko00920   
LinkDB

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