KEGG   Cellulophaga lytica HI1: IX49_09805
Entry
IX49_09805        CDS       T03279                                 
Name
(GenBank) methionine synthase
  KO
K00548  5-methyltetrahydrofolate--homocysteine methyltransferase [EC:2.1.1.13]
Organism
clh  Cellulophaga lytica HI1
Pathway
clh00270  Cysteine and methionine metabolism
clh00450  Selenocompound metabolism
clh00670  One carbon pool by folate
clh01100  Metabolic pathways
clh01110  Biosynthesis of secondary metabolites
clh01230  Biosynthesis of amino acids
clh04980  Cobalamin transport and metabolism
clh04981  Folate transport and metabolism
Brite
KEGG Orthology (KO) [BR:clh00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    IX49_09805
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    IX49_09805
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    IX49_09805
 09150 Organismal Systems
  09154 Digestive system
   04981 Folate transport and metabolism
    IX49_09805
   04980 Cobalamin transport and metabolism
    IX49_09805
Enzymes [BR:clh01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.13  methionine synthase
     IX49_09805
SSDB
Motif
Pfam: Met_synt_B12 Pterin_bind B12-binding_2 B12-binding Baculo_LEF-2
Other DBs
NCBI-ProteinID: AIM60798
LinkDB
Position
2181923..2184613
AA seq 896 aa
MKNLKPKYLKLSGLEPLVVTPDTNFINVGERTNVAGSKKFLRLIKEEKFDEALDIARHQV
EGGAQIIDINMDDGLIDGKEAMVKFLNLVIAEPDIARVPIMIDSSKWEIIEAGLQVVQGK
CVVNSISLKEGEEEFIHHAKLIKRYGAAVIVMAFDEVGQADNYERRIEIAKRSYDVLVNK
VNFAPEDIIFDLNIFPVATGMDEHKRNAIDFIEATAWVKENLPHCSVSGGVSNVSFSFRG
NNPVREAMHSVFLYHAIQAGMNMGIVNPTMLEVYDDIPKDLLERVEDVMLDRRDDATERL
LDFAETVVGKAKESTVDLSWREEPIQNRITRALVKGIDQYIVEDVEAARQSVDKPIEVIE
GHLMTGMNVVGDLFGSGKMFLPQVVKSARVMKKAVAYLLPYIEEEKLKNPQEGESSSAGK
ILMATVKGDVHDIGKNIVGVVLACNNYEIVDLGVMVPPEKIIQAAKDENVDVIGLSGLIT
PSLDEMVFFAKEMERQNFTVPLLIGGATTSKAHTAVKIDPQYKNAVVYVNDASRAVTVVG
DLLQKETKDAFKKTIKLDYEEFRKQFLKRTKHKEYLPIADARKNKYKIDWKTSEIVKPNA
LGIQVIEEYDLNKLVEFIDWTPFFRSWELHGKFPDILTDEIVGTQATDLFAEAQQMLTKL
IDEKLLTAKAVFGLFKANTINDDDIELETPNGKHTFRTLRQQLKKYAGKPNFALSDFIAP
KETGKEDYIGCFCVSTGFGAEEIAENYRKNLDDYNSIMVKALADRLAEAFAECLHKDIRT
THWGYASNESLDNEALIKEEYKGIRPAPGYPACPDHLEKPTIWDILKVKETIGVELTDSL
AMWPAASVSGYYFANPEARYFGVGKIKEDQVEDFAARKNIALETALKWLAPNIADD
NT seq 2691 nt   +upstreamnt  +downstreamnt
atgaaaaatttaaaacctaaatatttaaaactttcaggattagaaccattggttgttaca
ccagatactaactttattaatgtaggtgaacgtactaacgtagctggttctaaaaagttt
ttaaggctaataaaagaagaaaagtttgatgaagctctagatattgcacgccaccaagta
gaaggtggggcgcaaattatagacattaatatggatgacggacttatagatggcaaagaa
gctatggttaagttcttaaacctagttattgcagaaccagatattgctagagttcctata
atgatagacagctctaaatgggaaattatagaagctggtttacaagtggttcaaggtaaa
tgtgtggtaaactctataagtcttaaagaaggagaagaagaatttatacaccacgccaaa
cttattaagcgttacggtgcagccgtaattgtaatggcttttgatgaggtaggacaggca
gataattatgaacgtagaatagaaatagctaaacgttcttatgatgttttggtaaacaag
gtaaactttgcaccagaagacatcatttttgatcttaatatttttcctgttgctaccggt
atggatgagcataaacgcaacgccatagattttatagaagctacagcttgggtaaaggaa
aatttaccacattgtagtgtaagtggaggtgttagtaatgtgtcgttttcttttagaggt
aacaaccctgtgcgtgaggctatgcactcagtttttttataccacgccatacaggcaggt
atgaatatgggaattgtaaatcctactatgctagaggtttatgatgatattcctaaggat
ttattagagcgtgtagaagatgtaatgttagaccgtagggatgatgctacagaacgtttg
ttagattttgcagaaacggtagttggtaaggcaaaagagagcacggtagatttatcatgg
agagaagaacctatacaaaaccgtattactagagcattggtaaaaggtatagaccagtat
attgtagaagacgtagaagcagctaggcaaagtgtagacaaacctattgaggttatagaa
ggtcatttaatgactgggatgaatgttgttggtgatttgtttggtagcggaaaaatgttt
ttaccgcaggttgtaaagtcagcacgagtaatgaaaaaagcggttgcttacttattgcct
tatatagaagaggaaaaacttaagaatccgcaagagggagagtcttcttctgcaggtaaa
attttaatggctactgttaaaggagatgtgcatgatattggtaaaaatattgtgggcgtg
gttttagcatgtaacaattatgagattgtagatttaggggtaatggtgccaccagaaaaa
attatacaagctgctaaagatgaaaatgtagatgttattggtttaagcggattaataaca
ccgtctttagatgaaatggttttttttgctaaggaaatggagcgccaaaactttactgtg
cctttgcttattggtggtgcaactactagcaaagcacatactgcagtaaaaatagatccg
cagtataaaaatgctgtagtgtatgtaaacgatgcttctagagcggttactgttgttgga
gatttattgcaaaaagaaaccaaagatgcttttaaaaagacaattaaattagactatgaa
gagtttagaaaacaatttttaaaacgtaccaaacataaggagtatttacctattgcagat
gcgcgtaaaaataaatataaaatagattggaaaacatcagaaattgtaaaaccaaatgca
cttggaatacaagttatagaggaatatgatttaaataagttggttgagtttatagactgg
actcctttttttagaagctgggagttgcacggtaaatttccagatattttaactgatgaa
attgtaggtacacaggctacagatttgtttgcagaggcgcaacaaatgcttacaaagctt
attgatgaaaaactactaaccgcaaaagcagtttttggtttgtttaaagccaatacaatt
aatgatgatgatattgagctagaaacacctaacggaaaacatacctttagaaccttacgt
cagcaattaaagaagtatgcaggtaagccaaattttgcattgtctgactttattgcgcct
aaagaaacaggtaaagaagattatataggttgtttttgcgtaagtactggttttggagca
gaagaaatagccgaaaattaccgtaaaaacttagacgattacaattctattatggtaaaa
gctttagcagataggctagcagaagcttttgcagaatgcttgcataaagatattagaact
acacattggggttatgctagtaatgaatctttggataatgaagctttaattaaagaggaa
tacaaaggtataagacctgcaccaggatatcctgcttgtccagaccacctagagaaacct
actatctgggatattttaaaagtaaaagaaacaataggtgtagaacttacagatagtttg
gcaatgtggccagctgcatctgtatctggttattattttgcaaatccagaggctcgctat
tttggagttggaaaaattaaagaagaccaagttgaagattttgcagctcgtaaaaatata
gcattagaaacggctttaaaatggcttgcaccaaatatagcagatgattaa

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