KEGG   PATHWAY: ecz00450
Entry
ecz00450                    Pathway                                
Name
Selenocompound metabolism - Escherichia coli O45:K1:H7 S88 (ExPEC)
Class
Metabolism; Metabolism of other amino acids
Pathway map
ecz00450  Selenocompound metabolism
ecz00450

Organism
Escherichia coli O45:K1:H7 S88 (ExPEC) [GN:ecz]
Gene
ECS88_4390  metB; cystathionine gamma-synthase, PLP-dependent [KO:K01739] [EC:2.5.1.48]
ECS88_3388  metC; cystathionine beta-lyase, PLP-dependent [KO:K01760] [EC:4.4.1.13]
ECS88_1669  malY; bifunctional beta-cystathionase, PLP-dependent and regulator of maltose regulon [KO:K14155] [EC:4.4.1.13]
ECS88_3109  putative aminotransferase [KO:K14155] [EC:4.4.1.13]
ECS88_4483  metH; homocysteine-N5-methyltetrahydrofolate transmethylase, B12-dependent [KO:K00548] [EC:2.1.1.13]
ECS88_4257  metE; 5-methyltetrahydropteroyltriglutamate-homocysteine S-methyltransferase [KO:K00549] [EC:2.1.1.14]
ECS88_1730  sufS; selenocysteine lyase, PLP-dependent [KO:K11717] [EC:2.8.1.7 4.4.1.16]
ECS88_0917  trxB; thioredoxin reductase, FAD/NAD(P)-binding [KO:K00384] [EC:1.8.1.9]
ECS88_1632  ynfE; oxidoreductase subunit [KO:K07309] [EC:1.97.1.9]
ECS88_1633  ynfF; oxidoreductase subunit [KO:K07310] [EC:1.97.1.9]
ECS88_3157  ygfK; putative oxidoreductase, Fe-S subunit [KO:K12527] [EC:1.97.1.9]
ECS88_3160  xdhD; fused putative xanthine/hypoxanthine oxidase: molybdopterin-binding subunit; Fe-S binding subunit [KO:K12528]
ECS88_3159  ygfM; putative oxidoreductase [KO:K12529]
ECS88_3022  cysN; sulfate adenylyltransferase, subunit 1 [KO:K00956] [EC:2.7.7.4]
ECS88_3023  cysD; sulfate adenylyltransferase, subunit 2 [KO:K00957] [EC:2.7.7.4]
ECS88_1814  selD; selenophosphate synthase [KO:K01008] [EC:2.7.9.3]
ECS88_4008  selA; selenocysteine synthase [KO:K01042] [EC:2.9.1.1]
ECS88_2256  metG; methionyl-tRNA synthetase [KO:K01874] [EC:6.1.1.10]
Compound
C00017  Protein
C00041  L-Alanine
C01528  Hydrogen selenide
C02535  Dimethyl selenide
C05172  Selenophosphoric acid
C05335  L-Selenomethionine
C05336  Selenomethionyl-tRNA(Met)
C05684  Selenite
C05686  Adenylylselenate
C05688  L-Selenocysteine
C05689  Se-Methyl-L-selenocysteine
C05690  Se-Methylselenomethionine
C05695  gamma-Glutamyl-Se-methylselenocysteine
C05697  Selenate
C05698  Selenohomocysteine
C05699  L-Selenocystathionine
C05703  Methaneselenol
C06481  L-Seryl-tRNA(Sec)
C06482  L-Selenocysteinyl-tRNA(Sec)
C16638  O-Phosphoseryl-tRNA(Sec)
C18870  Selenodiglutathione
C18871  Glutathioselenol
C18872  Trimethylselenonium
C18893  1-Methylseleno-N-acetyl-D-galactosamine
C18902  Methylselenic acid
C18904  Methylselenopyruvate
C18905  Methylselenocysteine Se-oxide
Reference
  Authors
Hoefig CS, Renko K, Kohrle J, Birringer M, Schomburg L
  Title
Comparison of different selenocompounds with respect to nutritional value vs. toxicity using liver cells in culture.
  Journal
J Nutr Biochem 22:945-55 (2011)
DOI:10.1016/j.jnutbio.2010.08.006
Reference
  Authors
McKenzie MJ, Hunter DA, Pathirana R, Watson LM, Joyce NI, Matich AJ, Rowan DD, Brummell DA
  Title
Accumulation of an organic anticancer selenium compound in a transgenic Solanaceous species shows wider applicability of the selenocysteine methyltransferase transgene from selenium hyperaccumulators.
  Journal
Transgenic Res 18:407-24 (2009)
DOI:10.1007/s11248-008-9233-0
Reference
  Authors
Pinto JT, Lee JI, Sinha R, MacEwan ME, Cooper AJ
  Title
Chemopreventive mechanisms of alpha-keto acid metabolites of naturally occurring organoselenium compounds.
  Journal
Amino Acids 41:29-41 (2011)
DOI:10.1007/s00726-010-0578-3
Reference
  Authors
Suzuki KT, Kurasaki K, Suzuki N
  Title
Selenocysteine beta-lyase and methylselenol demethylase in the metabolism of Se-methylated selenocompounds into selenide.
  Journal
Biochim Biophys Acta 1770:1053-61 (2007)
DOI:10.1016/j.bbagen.2007.03.007
Reference
  Authors
Gromer S, Gross JH
  Title
Methylseleninate is a substrate rather than an inhibitor of mammalian thioredoxin reductase. Implications for the antitumor effects of selenium.
  Journal
J Biol Chem 277:9701-6 (2002)
DOI:10.1074/jbc.M109234200
KO pathway
ko00450   
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