KEGG   Ruminiclostridium herbifermentans: EHE19_009965
Entry
EHE19_009965      CDS       T07161                                 
Name
(GenBank) homocysteine S-methyltransferase family protein
  KO
K00548  5-methyltetrahydrofolate--homocysteine methyltransferase [EC:2.1.1.13]
Organism
rher  Ruminiclostridium herbifermentans
Pathway
rher00270  Cysteine and methionine metabolism
rher00450  Selenocompound metabolism
rher00670  One carbon pool by folate
rher01100  Metabolic pathways
rher01110  Biosynthesis of secondary metabolites
rher01230  Biosynthesis of amino acids
rher04981  Folate transport and metabolism
Module
rher_M00017  Methionine biosynthesis, aspartate => homoserine => methionine
Brite
KEGG Orthology (KO) [BR:rher00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    EHE19_009965
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    EHE19_009965
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    EHE19_009965
 09150 Organismal Systems
  09154 Digestive system
   04981 Folate transport and metabolism
    EHE19_009965
   04980 Cobalamin transport and metabolism
    EHE19_009965
Enzymes [BR:rher01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.13  methionine synthase
     EHE19_009965
SSDB
Motif
Pfam: S-methyl_trans B12-binding Pterin_bind B12-binding_2 CdhD UPF0146 HMG_CoA_synt_N
Other DBs
NCBI-ProteinID: QNU65270
UniProt: A0A4U7JIQ7
LinkDB
Position
complement(2428101..2430512)
AA seq 803 aa
MNKATFRELISNKILILDGATGTQLQKKGMPTGVCPEQWVYENPDVIKSIQKEYIESGSN
IIYTCTFGGNRIKLDEFGIGDRTVELNRCLAKYSKEAAGDKCLVAGDLASTGRFIKPLGD
MDFEDCVNIYKEQVKGLLEGGVDLFVIETMLDIQEARAALIAVKESCDLPVCVSMSFDEN
FRTLTGTDPITALITLQSLGADVVGCNCSTGPVQMLKIISMMKPYAKVPLMAKPNAGLPK
LINGKTTFDMKPEEFGSYIKEFIDAGVNLLGGCCGTSPDYIKQIYLESRNLKPAVVSSEP
YSAITSCRKTEFFGLNKPVAIVGERINPTGKKQLQAELREGSTHEIRKFAAEQVEKGANI
LDVNVGMPGIDEKATMLNTVSLLSSIIDAPLCLDSSSPEVLEAALRIYPGRALINSISQE
KVKLEKLLPVAAKYGAMFILLPLSDEGVPEKAEQRKVIVENVFAKAAEFGYQKNDVVVDG
LVMTVSANQEAAAETLKLIDWCSKEFGCGTIVGLSNVSFGLPERSWVNAAFLAMAISKGL
TMAIANPSSELLMNIKMACDVITMNDVNSKSYISYFGSQPKPTAGEVRIQAQDKKIGDRI
FDAVLNGDTEIIGTLIEKALEEKVSARDIVDNHLIPAINQVGKYFDEKKYFLPQLIQSAE
TMKKGFTFVEPLLKEAVTAEEKEVVIIMATVKGDIHDIGKNIVALMLRNYGFIVHDLGKD
VSAETIIDKAKSLNAHIIGLSALMTTTMVEMREVIKLAKEQNLNCKFMIGGAVVDADYAK
EIGADGYSKDAYEAVKLAKRLSE
NT seq 2412 nt   +upstreamnt  +downstreamnt
atgaataaagcaacgtttagagaactaatttcaaataaaatactaatacttgatggtgct
acaggaacacagttgcaaaaaaaaggtatgcctacaggcgtatgtcctgaacaatgggtt
tatgagaatcctgatgtgattaaaagcatccaaaaggaatatatagaatcaggttcaaac
ataatatatacctgtacttttggtggcaatcgcattaaacttgatgaattcggtataggg
gacagaacagttgaactaaacagatgcttagctaagtactccaaagaagctgcaggtgat
aaatgccttgttgcaggtgacttggcctctacaggcagattcataaaacctctgggagat
atggatttcgaggattgtgtaaatatatataaagaacaggttaaaggattattagaggga
ggcgtagacctttttgtaatagaaaccatgctagacatacaggaagctagagcggcactt
attgcagtaaaagaaagctgtgatttgcctgtttgtgtaagtatgagttttgatgagaat
tttagaacattaactggaactgacccaattactgccttaattaccttgcaaagccttgga
gctgatgttgttggctgtaattgctctacagggccagtgcaaatgttaaaaattatttca
atgatgaagccatatgctaaagtgcctttaatggctaagccaaatgcaggactaccaaag
cttattaatggtaaaactacttttgatatgaagcctgaggaatttggttcatatataaaa
gaatttatagacgcaggagtaaacctattaggaggctgttgtggaacctctcctgattat
attaaacagatttatttagaaagcagaaatttaaagccagctgttgtttcttctgagcct
tatagtgctataacttcctgtcgtaaaactgaattctttggtttaaataaacccgttgct
attgttggagagaggattaatcctactggaaagaaacaactgcaagctgagcttagagag
ggttcaacccacgaaataagaaagtttgctgctgaacaggtagagaaaggggctaatatt
cttgatgttaatgttggtatgccgggtattgatgaaaaggcaacaatgctaaacactgta
agtttattgagttcaataattgatgctccgctttgcttggattcatcatcacctgaagtt
cttgaagcagcacttagaatatatccaggaagagcattaattaattcaatttctcaagaa
aaagtaaaactggagaagcttttaccagttgccgcaaaatatggcgctatgtttatattg
cttcctctaagcgatgaaggcgttcctgaaaaagctgagcaaagaaaagtaattgttgaa
aatgtttttgcaaaagcagctgaatttggttatcaaaaaaacgatgttgtagtagatggt
ttagttatgacagtttcggcaaaccaagaagctgctgctgagacattaaagctgattgat
tggtgcagcaaggaatttggctgcggaacaatagttggtctttcaaatgtatcctttggt
ttacctgagagaagctgggtaaatgcagctttcttggctatggctataagcaaggggctt
actatggcgatagcaaatccatcaagtgaactattaatgaatataaaaatggcttgtgac
gtaattacaatgaatgatgtaaacagcaaaagctatatatcctattttggcagtcagcca
aagccaacagctggggaagtacgaatacaagcccaagataaaaaaataggtgacagaata
ttcgatgccgtacttaatggtgatactgaaatcattggtacactaatagaaaaagcttta
gaagaaaaggttagtgctcgtgacattgtagataaccatttgattcctgcaattaatcaa
gtaggaaagtactttgatgaaaagaagtattttttacctcaattaattcaaagtgccgaa
accatgaaaaagggctttacttttgtagaaccgctgcttaaggaagctgtaacagctgaa
gaaaaagaagtggtcataattatggctacagtaaaaggtgacattcatgatattggtaaa
aatattgttgcacttatgcttcgaaattatggttttatagtacatgatttaggaaaggat
gtaagtgctgagacaattatagataaagctaaaagcttgaatgcacacattataggctta
tccgcacttatgaccacaacgatggtggaaatgagagaagttataaaacttgcaaaggaa
caaaatttaaattgcaagtttatgataggcggagcagttgtagatgctgattatgcaaag
gaaatcggagcagatggttattctaaagatgcatatgaagctgtaaagctggcgaaaagg
ctttcagaataa

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