KEGG   Brachyspira pilosicoli P43/6/78: BPP43_01130
Entry
BPP43_01130       CDS       T02387                                 
Name
(GenBank) 5-methyltetrahydrofolate-homocysteine methyltransferase
  KO
K00548  5-methyltetrahydrofolate--homocysteine methyltransferase [EC:2.1.1.13]
Organism
bpip  Brachyspira pilosicoli P43/6/78
Pathway
bpip00270  Cysteine and methionine metabolism
bpip00450  Selenocompound metabolism
bpip00670  One carbon pool by folate
bpip01100  Metabolic pathways
bpip01110  Biosynthesis of secondary metabolites
bpip01230  Biosynthesis of amino acids
bpip04981  Folate transport and metabolism
Brite
KEGG Orthology (KO) [BR:bpip00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    BPP43_01130
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    BPP43_01130
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    BPP43_01130
 09150 Organismal Systems
  09154 Digestive system
   04981 Folate transport and metabolism
    BPP43_01130
   04980 Cobalamin transport and metabolism
    BPP43_01130
Enzymes [BR:bpip01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.13  methionine synthase
     BPP43_01130
SSDB
Motif
Pfam: S-methyl_trans Pterin_bind B12-binding B12-binding_2 CdhD Importin_rep_3
Other DBs
NCBI-ProteinID: AGA65576
UniProt: A0A3B6VI27
LinkDB
Position
235244..237871
AA seq 875 aa
MFNSVKDRLKELIREQYLIIDGATGTELQKKEIKKEYWTFNGNNIEGCNEILNITAPHIM
KEIHIDYLNANANITKTNSFGAIPWVLSEYDIADKAYELAKQAAVIANEARDEYLKNPNS
KGDLDRDIFIAGSLGPGVKLPSLGQIGFDEMYSGYTLAAKGLIEGGVDIILLETAQDVLQ
LKAAILAVNDTAKKLNKDIPIMVSVTIEKEGTMLLGTDIETAYTILSNLDIFSIGMNCGT
GPDMAMQHIKKLSEISCLPISIHSNAGLPENRDGKAYYSMTPEEFAEINSEFFNLSGLAF
IGGCCGTTPKHIEALAKKVKGVKPKKTALEKQRAYIASLFNSVSIKQEPAPLMIGERSNA
TGSKIFRELMIAGDMDGMLDVGIKQVKSGSHAIDVNAAWAGRNEIEDITKIISAYVKQIS
LPLVIDAIKPDVIEAALKVYGGKPIINSANMEQGEEKFDAICSLAKRYGASIMLLTIDEK
AMALTCEDKLRMCERMYDRAVNVHKILPHDIIFDPLTFTLASGDENSFLAGVETLNAIKE
LSKRYPESSISLGVSNISFGLKEEARKVMNSVFLYEAINHGLSAAIVNVAQILPISKIGE
KEIELARELIYNKNKTKEPLINYINYFSDKKEKKELTNVTNEEKIKKPIREAIRDAMLDG
EWKDMQNLLNEVKENSEEFGGEKKFAQAIIDEILLPTMADIGVKFGEGSIQLPFVLGSAE
VMKKSVDFLSEFLEKKKQEKTAKIILGTVAGDVHDVGKNLVEIIIKNNGFETVNLGTKVP
IEKFIEAYHEHNADCIGMSGLLVKSTEVMKDNLAYIRDKGLKIPILLGGAALTKDFVENT
CKKVYGDSGKIFYCKDGFDDIVAIKEIIADRDKEK
NT seq 2628 nt   +upstreamnt  +downstreamnt
atgtttaatagtgttaaggatagattaaaagagttaataagagaacaatatttaataata
gacggtgccacaggtacagaacttcaaaagaaagaaataaaaaaagaatattggactttc
aacggcaataatatagaaggctgtaatgagatattgaatataacagctcctcatataatg
aaagagatacatatagattatttgaatgctaatgccaatataacaaagactaatagtttt
ggggctataccttgggttttaagcgaatatgatattgctgataaggcttatgaactagca
aaacaagcggcagttatagcaaatgaggctagagatgaatatttaaaaaatcctaattct
aaaggcgatttggatagagatatttttatagcaggtagtttaggtcctggagtaaaatta
cctagtttggggcagattggttttgatgagatgtatagcggttatactttagctgcaaaa
ggtttaatagaaggcggagttgatataatacttcttgaaacggcacaagatgttttgcaa
ttaaaagcagcaatattagcagttaatgatacggctaaaaaattaaataaagatattcca
ataatggtttctgtaacaatagaaaaagaaggcactatgcttttgggtacagatatagag
acagcatacacaatactttcaaatttggatatattttctataggtatgaactgcggtaca
gggcctgacatggcaatgcagcacataaaaaaactttctgaaatatcttgtttaccaata
tcaatacatagtaatgcagggcttccggaaaacagagatggaaaagcttattatagcatg
acacctgaagagtttgctgagattaacagcgagttttttaatttaagcggacttgcattt
ataggaggctgctgcggaactactcctaaacatatagaggcattagcaaaaaaagttaaa
ggagtaaaacctaaaaaaacagcattagaaaagcaaagggcttatatagctagtttattt
aattctgtaagcattaagcaagagccagcacctttaatgataggtgagagaagcaatgcc
acaggaagtaaaatatttagagagcttatgatagcaggagatatggacggaatgcttgat
gttggtataaagcaagttaagtctggaagtcatgctatagatgttaatgctgcttgggct
gggcgtaatgaaatagaagatattacaaaaattatttctgcttatgttaaacaaatttct
ttacctttggttattgatgcgataaagcctgatgttatagaagcagctttaaaagtatat
ggaggaaaaccaataataaactctgccaatatggagcagggggaagagaagtttgatgct
atatgttcacttgcaaaaagatatggagcttctattatgcttcttactatagatgaaaaa
gctatggcattaacttgtgaggataaattaagaatgtgcgaacgtatgtatgatagggct
gttaatgtgcataaaatacttccgcatgatattatatttgaccctttaacatttacactt
gcaagcggtgatgaaaatagttttttagctggtgttgaaactttgaatgctataaaagaa
ttatcaaaaagatatcctgaaagctctataagtttgggggtgtcaaatatttcttttgga
cttaaagaagaggcaagaaaggttatgaactctgtatttttgtatgaggctattaatcat
gggcttagtgctgctattgttaatgtggctcaaattcttcctatttcaaaaataggggag
aaagaaatagaattagcaagagaattaatatataacaaaaacaaaactaaagagcctctt
ataaattatataaattatttctctgacaaaaaagaaaagaaagaattaaccaatgtaacc
aatgaagaaaaaataaaaaaacctataagggaagctataagagatgctatgcttgacggc
gagtggaaagatatgcaaaacttacttaatgaagttaaagaaaatagcgaagagtttgga
ggagagaaaaagtttgcacaggctataattgatgagatacttcttcctactatggcagat
attggagttaagtttggtgagggcagtatacagcttccttttgttttgggttctgcggag
gtaatgaaaaagagtgttgattttctttctgagtttttagagaaaaagaaacaggagaaa
actgctaaaataatacttggtactgttgcgggagatgtgcatgatgtgggtaaaaattta
gtagagataataataaaaaataatggttttgaaactgttaatctcggtacaaaagttcct
atagagaaatttatagaggcgtatcatgagcataatgctgattgtataggaatgtctggg
cttttggtaaaatctactgaagtgatgaaagataatttagcgtatattagagataagggc
ttaaaaatacctatacttttaggcggtgctgctttaactaaagactttgttgaaaacact
tgcaaaaaagtttatggagacagtgggaaaatattttattgtaaagacggttttgatgat
attgttgccataaaagagataatagcagacagagataaagaaaaataa

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