KEGG   Sphingobium cloacae: SCLO_1015100
Entry
SCLO_1015100      CDS       T05301                                 
Name
(GenBank) B12-dependent methionine synthase
  KO
K00548  5-methyltetrahydrofolate--homocysteine methyltransferase [EC:2.1.1.13]
Organism
sclo  Sphingobium cloacae
Pathway
sclo00270  Cysteine and methionine metabolism
sclo00450  Selenocompound metabolism
sclo00670  One carbon pool by folate
sclo01100  Metabolic pathways
sclo01110  Biosynthesis of secondary metabolites
sclo01230  Biosynthesis of amino acids
sclo04980  Cobalamin transport and metabolism
sclo04981  Folate transport and metabolism
Module
sclo_M00017  Methionine biosynthesis, aspartate => homoserine => methionine
Brite
KEGG Orthology (KO) [BR:sclo00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    SCLO_1015100
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    SCLO_1015100
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    SCLO_1015100
 09150 Organismal Systems
  09154 Digestive system
   04981 Folate transport and metabolism
    SCLO_1015100
   04980 Cobalamin transport and metabolism
    SCLO_1015100
Enzymes [BR:sclo01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.13  methionine synthase
     SCLO_1015100
SSDB
Motif
Pfam: Met_synt_B12 Pterin_bind B12-binding_2 B12-binding
Other DBs
NCBI-ProteinID: BAV64550
UniProt: A0A1E1F230
LinkDB
Position
SCLO_1:complement(1744782..1747400)
AA seq 872 aa
MTEKPSATNFVNIGERTNVTGSAKFKKLIMAGDYAAAIDIARDQVENGAQVVDVNMDEGL
LDAVEAMTTFLKLMTSEPDISRVPVMIDSSKWEVIEAGLKCVSGKPIVNSISMKEGEEAF
LAHARKVMAYGAAVVVMAFDETGQADTKERKVEICERAYKLLIGIGFPPEDIIFDPNVFA
VATGIEEHNNYGVDFIEACKEIKARCPHVHISGGLSNLSFSFRGNEPVRRAMHSIFLYHA
IPAGMDMGIVNAGQLDVYDAIDPELREACEDVILNRPQRDPEVTPTERLVELAEKFRGKG
GEVDKAAEEWRGWPVAKRLEHALVKGIDMYVVEDTEEARLAAAKPIEVIEGPLMDGMNVV
GDLFGAGKMFLPQVVKSARVMKKAVAHLLPFIEAQKEPGAKGKGRVVMATVKGDVHDIGK
NIVGVVLQCNGFEVIDLGVMVPWQDILKAANENDADMIGLSGLITPSLDEMVTVAAEMQR
AQMTMPLLIGGATTSRVHTALRIDPAFEGPVVHVLDASRAVGVATALVSETQKTDFVQRT
KDDYEHVRVARANKGQSALLPLDDARANAFEIDEALKPPRPRLPGVHSFPDWDLKDLRDY
IDWTPFFRAWELAGVYPAILQDEIVGESATSLFSDAQKMLERIIDERWLTARGVAGLWPC
AREGDDIVVHVEDEKHVRLPMLRQQIAKREGRANMCLADFISPDGDWIGGFAVSIHGIEP
HLARFKAAIDDYSDILLKALADRLAEAFAERLHHYVRTALWGYAEGEQLTNEALIKEQYR
GIRPAPGYPACPEHSLKPLLFDMLDAHHATGISLTDSFAMLPTAAVSGFYFGHPQAEYFG
VARIGRDQLEDYAERRGVDVETAERWLRPNLD
NT seq 2619 nt   +upstreamnt  +downstreamnt
atgactgagaaaccctccgccaccaatttcgtcaacatcggcgagcgcaccaacgtcacc
ggctccgcgaagttcaagaagctcatcatggcgggcgactatgccgccgccatcgacatc
gcgcgcgatcaggtcgaaaatggcgcgcaggtggtggacgtcaacatggacgaggggctg
ctcgacgccgtggaggcgatgacgaccttcctcaagctcatgacgtccgagccggacatc
agccgcgtgccggtgatgatcgacagctccaaatgggaagtgatcgaggcgggcctcaaa
tgcgtgtccggcaagcccatcgtcaattcgatcagcatgaaggagggggaggaagccttc
ctcgcccatgcgcgaaaggtcatggcctatggcgcggcggtcgtcgtcatggccttcgac
gagacggggcaggcggacacgaaagagcgcaaggtcgaaatctgcgagcgtgcctacaag
ctgctgataggcattggatttccgccggaggacatcatcttcgatcccaatgtcttcgcg
gtcgcgacgggaatcgaggagcataataattacggcgtcgacttcatcgaggcatgcaag
gagatcaaggcgcgctgcccgcatgtgcatatctccggcgggctttcgaacctcagcttc
tccttccgcggcaatgagccggtgcggcgggcgatgcactccatcttcctgtatcatgcc
attccggcgggcatggacatgggcatcgtcaatgcggggcagctcgacgtctatgacgcc
atcgacccggaactgcgcgaagcctgcgaggatgtgatcctgaaccgcccccagcgcgat
ccggaggtcacgccgaccgagcggctggtcgaactcgccgagaaattccggggcaagggc
ggggaggtggacaaggcggccgaggaatggcgcggctggcccgtcgccaagcggctcgaa
catgcgctggtcaagggcatcgacatgtatgtggtcgaggatacggaggaagcccgcctc
gccgccgcgaaacccatcgaggtgatcgaaggaccgctgatggacggcatgaacgtggtc
ggcgacctgttcggcgcgggcaagatgttcctgccgcaggtcgtcaagtccgcccgcgtc
atgaagaaggccgtcgcccatctgctccccttcatcgaggcgcagaaggagccgggcgcc
aagggcaagggccgggtcgtcatggccaccgtcaagggcgacgtgcacgacatcggcaag
aatatcgtcggcgtggtgcttcagtgcaacggcttcgaggtgatcgacctgggcgtcatg
gtgccgtggcaggacatattgaaagccgccaatgagaatgacgccgacatgatcggcctc
agcggcctcatcaccccgtcgctggacgagatggtgacggtcgccgctgaaatgcagcgc
gcgcagatgaccatgccgctgctgatcggcggggccaccacttcgcgcgtgcatacggcg
cttcgcatcgacccggccttcgaagggccggtggtccatgtgctcgacgccagccgtgct
gtgggcgtggcgaccgcgctcgtgtccgaaacgcaaaagacggatttcgtccagcggacc
aaggatgattatgagcatgtccgcgtcgcccgcgcgaacaaggggcaaagcgccctgttg
ccgctggacgacgcgcgcgccaacgctttcgagatcgatgaggcgctgaagccgccccgg
ccgcgcctgccgggcgtccacagctttccggactgggatctgaaggatctgcgcgactat
atcgactggacgcccttcttccgcgcctgggaactggcgggcgtctatccggcgatcctg
caggatgagatcgtcggcgaaagcgccaccagcctgttcagcgacgcgcagaagatgctg
gagcggatcatcgacgagagatggctgaccgcgcggggcgtggcggggctgtggccctgc
gcgcgcgagggcgacgacatcgtcgttcatgtcgaggatgaaaagcatgtccgcctgccc
atgctccgccagcagatcgcgaagcgggaagggcgggccaatatgtgccttgccgacttc
atcagcccggacggcgactggatcggcggtttcgccgtgtcgatccacggcatcgaaccg
catctggcgcgcttcaaggcggcgatcgacgattattccgacatattgctgaaggcgctg
gcggatcgccttgccgaagcctttgccgaacggctgcaccactatgtccgcaccgcgctc
tggggctatgcggagggcgagcagctcaccaacgaggcgctgatcaaggagcaatatcgc
ggcatacggcccgcgcccggctatccggcctgtccggaacatagcctgaagccgctgctg
ttcgacatgctcgacgcgcatcatgcgaccggcatttcgctgaccgacagtttcgcgatg
ctgccgacggcggcggtcagcggcttttatttcggccatccgcaggcggaatatttcggc
gtcgcccgcatcggccgcgaccagctggaggattatgcggaacggcgtggcgtggatgtc
gaaacggcggaaaggtggctgcggcccaatctggattga

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