KEGG   Anoxybacteroides amylolyticum: GFC30_3143
Entry
GFC30_3143        CDS       T04397                                 
Symbol
metK
Name
(GenBank) methionine adenosyltransferase
  KO
K00789  S-adenosylmethionine synthetase [EC:2.5.1.6]
Organism
aamy  Anoxybacteroides amylolyticum
Pathway
aamy00270  Cysteine and methionine metabolism
aamy00670  One carbon pool by folate
aamy00999  Biosynthesis of various plant secondary metabolites
aamy01100  Metabolic pathways
aamy01110  Biosynthesis of secondary metabolites
aamy01230  Biosynthesis of amino acids
aamy01240  Biosynthesis of cofactors
Module
aamy_M00034  Methionine salvage pathway
aamy_M00609  Cysteine biosynthesis, methionine => cysteine
Brite
KEGG Orthology (KO) [BR:aamy00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    GFC30_3143 (metK)
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    GFC30_3143 (metK)
  09110 Biosynthesis of other secondary metabolites
   00999 Biosynthesis of various plant secondary metabolites
    GFC30_3143 (metK)
Enzymes [BR:aamy01000]
 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
     GFC30_3143 (metK)
SSDB
Motif
Pfam: S-AdoMet_synt_C S-AdoMet_synt_M S-AdoMet_synt_N
Other DBs
NCBI-ProteinID: ANB62256
UniProt: A0A160F6T6
LinkDB
Position
pDSM15939_1:complement(174067..175275)
AA seq 402 aa
MSAKRRLFTSESVTEGHPDKICDQISDAILDAILAKDPNARVACETSVTTGLVLVSGEIT
TSTYVDIPKIVRDTVREIGYTRAKFGFDADTCAVLTSIDEQSPDIAMGVDKALEAREGQM
TDEEIEAIGAGDQGLMFGFACNETKELMPLPISLAHKLARRLAEVRKEDILPYLRPDGKT
QVTVEYDENGKPVRIDTIVVSTQHHPEITQDQIVRNIKEHVIQPVVPAELIDENTKYFIN
PTGRFVIGGPQGDAGLTGRKIIVDTYGGYARHGGGAFSGKDPTKVDRSAAYAARYVAKNI
VAAGLADKCEVQLAYAIGVAKPVSISIDTFGTGKVSEDILVEVVRNNFDLRPAGIIKMLD
LRRPIYKQTAAYGHFGRTDIDLPWERTDKAEVLKEQALALAK
NT seq 1209 nt   +upstreamnt  +downstreamnt
atgtcagcaaaacgccgtttatttacttcggaatctgtaacagaaggccacccggacaaa
atttgtgaccaaatttctgacgcgattttagacgcgattttagcgaaggacccaaatgcg
cgcgtcgcatgcgaaacgagcgtaacaactggcttagtattagtaagcggagaaattacg
acatcgacgtacgttgatattccgaaaattgttcgtgatacggttcgtgaaatcggctat
acgcgtgcaaaattcggatttgacgcggatacgtgcgcggtgttgacttcgattgatgaa
caatcgccagacattgcaatgggtgttgataaagcgttagaagcgcgtgaaggtcagatg
actgacgaagaaatcgaagcgattggtgcgggcgaccaagggttaatgttcggatttgct
tgcaatgagacgaaagaactaatgccattaccgatttcattggcacacaaattagcacgt
cgcttagcagaagttcgcaaagaagacattttgccttacttgcgtccagacggaaaaaca
caagtaacggtcgagtacgatgagaacggcaaaccggttcgcatcgacacaatcgttgtt
tcgacgcagcaccatccagaaattacacaagatcaaattgtgcgcaacattaaagaacat
gtcattcagcctgtcgttccagcagagttaattgacgaaaatacgaaatactttatcaac
ccaacgggccgcttcgtgatcggtggtccacaaggggatgcgggattaacaggccgtaaa
attatcgtcgacacatatggcggatacgctcgtcacggcggcggtgcgttctctggaaaa
gacccaacaaaagtagaccgctcggcggcatacgcggctcgttatgtagcgaaaaacatc
gttgctgctggtcttgcagataaatgcgaagtgcaattagcgtatgcgatcggtgtcgcg
aaaccagtatccatttcgatcgacacgttcggcacagggaaagtatccgaagacatttta
gttgaagttgtccgcaacaactttgaccttcgcccagcaggcatcattaaaatgctagac
ttgcgccgcccgatttacaaacaaacagccgcttacggtcactttggacgtacagacatc
gaccttccgtgggagcgtacggataaagcagaagtgttaaaagagcaagcactcgcgtta
gcgaagtaa

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