KEGG   Pseudobutyrivibrio xylanivorans: FXF36_08850
Entry
FXF36_08850       CDS       T06217                                 
Name
(GenBank) methionine adenosyltransferase
  KO
K00789  S-adenosylmethionine synthetase [EC:2.5.1.6]
Organism
pxv  Pseudobutyrivibrio xylanivorans
Pathway
pxv00270  Cysteine and methionine metabolism
pxv00670  One carbon pool by folate
pxv00999  Biosynthesis of various plant secondary metabolites
pxv01100  Metabolic pathways
pxv01110  Biosynthesis of secondary metabolites
pxv01230  Biosynthesis of amino acids
pxv01240  Biosynthesis of cofactors
Brite
KEGG Orthology (KO) [BR:pxv00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    FXF36_08850
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    FXF36_08850
  09110 Biosynthesis of other secondary metabolites
   00999 Biosynthesis of various plant secondary metabolites
    FXF36_08850
Enzymes [BR:pxv01000]
 2. Transferases
  2.5  Transferring alkyl or aryl groups, other than methyl groups
   2.5.1  Transferring alkyl or aryl groups, other than methyl groups (only sub-subclass identified to date)
    2.5.1.6  methionine adenosyltransferase
     FXF36_08850
SSDB
Motif
Pfam: S-AdoMet_synt_C S-AdoMet_synt_M S-AdoMet_synt_N
Other DBs
NCBI-ProteinID: QFJ54959
UniProt: A0A5P6VT91
LinkDB
Position
1:complement(1944370..1945551)
AA seq 393 aa
MEKLLFTSESVTEGHPDKVCDAVSDAILDACLAEDPMSRVACETASCTGFVLVTGEITTK
AQLDVPAIVRKTLLEIGYDDGKKGIDGNSCAVMVALDQQSADIAMGVDKALEAKEGSLTD
DLDTGAGDQGMMFGFATNETEELMPYPISLAHRLALQLANVRKDGTLKYLRPDGKTQVSV
EYDEAGKPVRLEAVVLSTQHDEDVTQEQIHADIKKYVFDPVLPKDMIDAKTKFYINPTGR
FVIGGPHGDAGLTGRKIIVDTYGGYARHGGGAFSGKDCTKVDRSGAYAARYVAKNIVAAG
LAAKCEIQLSYAIGVAEPTSIMVDTFGTGKLSDEKLVEIVRENFDLRPAGIIKMLDLRRP
IYRPTAAYGHFGRTDVKLPWEQTDKVDALKKYL
NT seq 1182 nt   +upstreamnt  +downstreamnt
atggaaaagttactttttacttcagagtcagtaacagaaggccatcctgataaggtttgt
gatgccgtatcggatgccatcctcgatgcttgcttagctgaagacccaatgagtagagta
gcttgtgagactgcttcatgtacaggtttcgtacttgttacaggagaaatcacaacaaag
gctcagctcgacgttccagctattgttcgcaagactcttcttgaaatcggttatgacgat
ggaaagaaaggcattgatggaaactcttgcgctgttatggtcgctcttgatcaacaatcc
gcagacattgcaatgggtgttgacaaggctcttgaggcaaaggaaggctcacttacagat
gacctggatacaggcgctggtgaccagggtatgatgttcggtttcgctacaaacgagaca
gaagagctcatgccttatcctatttctcttgctcatagacttgctctacagctcgcaaat
gtccgcaaagacggtacacttaagtacctccgtccagacggaaagacacaggtttctgta
gagtatgacgaagctggcaagccagttagacttgaagctgtagttttatctacacagcat
gatgaagatgttactcaggaacagattcacgcagacattaagaagtatgtcttcgatcca
gtccttccaaaggacatgattgatgctaagacaaagttctacatcaatccaacaggccgc
tttgttatcggtggcccacacggtgatgctggcctcacaggccgtaagatcatcgttgat
acatacggcggatacgctcgtcacggcggcggtgcattctcaggtaaggattgcacaaag
gttgaccgctcaggtgcttatgcagctcgctacgttgcaaagaatatcgttgccgcaggc
cttgcagctaagtgcgagattcagctttcatacgctatcggcgttgcagagccaacatct
atcatggtagataccttcggaacaggtaagctttcagatgagaagcttgttgagattgtt
cgcgagaacttcgatcttcgtccagcaggtatcatcaagatgctcgacttacgtcgtcca
atctaccgtccaacagctgcttatggtcactttggccgtacagatgttaagcttccttgg
gagcagacagacaaggtagatgctttaaagaaatatctttaa

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