KEGG   Fluviicola taffensis: Fluta_1068
Entry
Fluta_1068        CDS       T01455                                 
Name
(GenBank) methionine synthase (B12-dependent)
  KO
K00548  5-methyltetrahydrofolate--homocysteine methyltransferase [EC:2.1.1.13]
Organism
fte  Fluviicola taffensis
Pathway
fte00270  Cysteine and methionine metabolism
fte00450  Selenocompound metabolism
fte00670  One carbon pool by folate
fte01100  Metabolic pathways
fte01110  Biosynthesis of secondary metabolites
fte01230  Biosynthesis of amino acids
fte04980  Cobalamin transport and metabolism
fte04981  Folate transport and metabolism
Brite
KEGG Orthology (KO) [BR:fte00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    Fluta_1068
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    Fluta_1068
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    Fluta_1068
 09150 Organismal Systems
  09154 Digestive system
   04981 Folate transport and metabolism
    Fluta_1068
   04980 Cobalamin transport and metabolism
    Fluta_1068
Enzymes [BR:fte01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.13  methionine synthase
     Fluta_1068
SSDB
Motif
Pfam: Met_synt_B12 Pterin_bind B12-binding_2 B12-binding MtrH
Other DBs
NCBI-ProteinID: AEA43066
UniProt: F2I9S0
LinkDB
Position
1196788..1199454
AA seq 888 aa
MNNLRLSGLEAITITPESNFTNIGERTNVTGSRAFLRMIKDNDYEAALSVAREQVEGGAQ
IIDINMDEGMIDGKEAMVKFLNLIAAEPDISKVPIMVDSSKWEIIEAGLQCIQGKGIVNS
ISLKEGEENFIRQAKLIKRYGAASVIMAFDEDGQADSYERRIEICERSYRILVDIVKFAP
EDIIFDPNIFPVATGMEEHNNNALDFFRATKWIRENLPGAHVSGGVSNVSFSFRGNNPVR
EAMHSAFLFHAVKHGMDMGIVNPSMLEVYSDIDKELLERVEDVLLNRRDDSTERLLDFAE
TFKGEDKKKEVALEWRNAPVNERLAHALVKGIVDFIDEDVEECRHQFERPIQVIEGPLMD
GMNIVGDLFGSGKMFLPQVVKSARVMKKAVAYLLPFIDAAKDGKSSSAGKVIMATVKGDV
HDIGKNIVSVVLSCNNYEIVDLGVMVPAERIIQAAIDEKADVIGLSGLITPSLDEMVHMA
KEMERANLSIPLLIGGATTSKVHTAVKIEQNYTKGQTVHVLDASRSVTVVEQLLGYKKEQ
FVKDIQADYARLREHHEKHRGAKQVLSYADALKNKLVLEFNGETIKKPKQLGVQVIEEQD
LALLVPYIDWTPFFQTWELHGKFPRILTDEVVGKEATQLYADAQAMLKQIVDEKWLTAKA
AFGIFPVNSIDDDIEIYSDEQRTSVLGIQHSLRQQTKKAAGQPNLSLADFIAPKESGLID
YLGAFVVTAGHGIEEHVKRFEADHDDYNSIMIKALADRFAEAFAEFLHAKVRRETWGYAN
DETLDNDALIAEKYIGIRPAPGYPACPDHTEKPNLFKLLNAEELSGVSLTETLAMWPAAS
VSGWYFAHPDSKYFGLGKVTLDQVDSISTRKNMDINHMKRWLSSNLLD
NT seq 2667 nt   +upstreamnt  +downstreamnt
atgaacaatttacgcttatccggcttagaagcaattaccataacacctgaaagtaacttt
accaatattggtgagcgaaccaatgtaactggttcgcgtgctttcttgcgcatgatcaaa
gacaacgattacgaagctgctttatccgtagctcgtgagcaagtggaaggtggtgcacaa
atcatcgacatcaacatggatgaaggaatgatcgatggcaaggaggcgatggtgaaattc
ttaaacctcatcgcagctgaaccagatatttcgaaggttccaatcatggtagatagttcc
aaatgggaaattatcgaagctggtttgcaatgtattcaaggaaaaggaatcgtgaactct
atttcgttgaaagagggcgaagaaaactttatccgtcaagcaaaattgattaaacgttac
ggagctgcttctgtaattatggcttttgacgaagatggtcaggcagacagctacgaaaga
cgtatcgaaatttgcgaacgttcgtaccgtattttggtagacatcgtaaaattcgcaccc
gaagacattatttttgaccccaatatttttcctgtcgctacgggaatggaagaacacaac
aacaatgcgctagatttcttccgagcaaccaaatggatccgtgaaaaccttcccggagcg
cacgtttcaggtggagtttcaaacgtttctttctctttccgcgggaataatcctgtacgt
gaggcaatgcactccgcatttttgtttcatgccgttaagcacggaatggatatgggaatt
gtgaatccttctatgttggaagtttactcggatattgacaaagaattattggaacgcgtt
gaagatgttcttttaaatagaagagatgattctacagagcgactgttagattttgcagaa
acattcaaaggagaagacaagaaaaaagaagttgccttagaatggcgaaatgctccagtg
aatgaaagacttgctcatgcattggtaaaaggaattgtggatttcattgatgaagatgtg
gaagaatgtcgtcatcaatttgaaagaccaattcaagtgattgaaggccccttgatggat
ggaatgaacatcgtgggagatttatttggaagcggtaaaatgttcttgcctcaggttgta
aaatctgctcgtgttatgaaaaaagccgtagcctatctcttgccgtttattgatgcagca
aaagatggaaaatcaagttctgctggaaaagtaattatggcaactgtaaaaggagacgtt
cacgatattggaaaaaacattgtttcggttgtacttagttgcaacaattacgaaattgta
gatcttggtgtgatggttcctgctgaacgaattattcaagcagccattgatgaaaaagca
gatgtgattggattgagcggattaattactccttcattggatgaaatggttcacatggcc
aaagaaatggaacgcgccaatctttccattccattgttgattggtggagcaacgacatca
aaagtacataccgcagtaaaaatcgaacaaaattacaccaaaggacaaaccgttcatgta
ttggatgcatcacgctcagtaaccgtagtagaacaattattgggttataaaaaagaacaa
tttgtaaaagacatacaagcagattatgcacgtcttcgagaacaccatgaaaaacaccgt
ggggcaaaacaagtactttcttatgcagatgcattgaaaaataaattggtattggaattc
aatggggaaacaataaaaaaaccaaaacaattaggtgttcaagtaatcgaagaacaagat
ttggcgctattggttccatatatcgattggactcctttcttccaaacatgggaattacat
gggaaatttccacgtattttgacagacgaagtagttggaaaagaagcaacacaactttat
gccgatgcgcaagccatgttgaaacaaattgtggatgaaaaatggctcacagccaaagca
gcatttggtattttcccagtaaatagtattgacgacgatattgaaatttattcagacgaa
caacgtacttccgttttaggaattcaacattcactgcgtcagcaaaccaaaaaagcagca
ggacaacccaatctttctttagcagatttcattgctccaaaggaaagcggtttgattgat
tatttgggagcttttgttgtaaccgctggacatggaattgaagaacatgtaaaacgtttc
gaagcagatcacgacgattacaattccatcatgataaaagcgttagcagatcgtttcgca
gaagcatttgctgaatttttacatgcgaaagtaagacgggaaacttggggttatgccaat
gatgaaaccttagataacgacgcactcattgctgaaaaatatataggaattcgacctgca
cctggttatcccgcttgtccagatcatacagaaaaaccaaacttattcaaattactcaac
gcagaagaattaagcggagtttcattaacagaaactttagccatgtggccagctgcatct
gtttcaggttggtattttgcacatccagattcaaaatattttggacttggcaaagtaaca
ctggatcaggtagatagcatttctaccagaaaaaacatggatataaatcacatgaaacgt
tggctttcaagcaaccttctcgattaa

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