KEGG   Oricola thermophila: HTY61_02315
Entry
HTY61_02315       CDS       T06643                                 
Symbol
bmt
Name
(GenBank) betaine--homocysteine S-methyltransferase
  KO
K00548  5-methyltetrahydrofolate--homocysteine methyltransferase [EC:2.1.1.13]
Organism
orm  Oricola thermophila
Pathway
orm00270  Cysteine and methionine metabolism
orm00450  Selenocompound metabolism
orm00670  One carbon pool by folate
orm01100  Metabolic pathways
orm01110  Biosynthesis of secondary metabolites
orm01230  Biosynthesis of amino acids
orm04980  Cobalamin transport and metabolism
orm04981  Folate transport and metabolism
Brite
KEGG Orthology (KO) [BR:orm00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    HTY61_02315 (bmt)
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    HTY61_02315 (bmt)
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    HTY61_02315 (bmt)
 09150 Organismal Systems
  09154 Digestive system
   04981 Folate transport and metabolism
    HTY61_02315 (bmt)
   04980 Cobalamin transport and metabolism
    HTY61_02315 (bmt)
Enzymes [BR:orm01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.13  methionine synthase
     HTY61_02315 (bmt)
SSDB
Motif
Pfam: S-methyl_trans
Other DBs
NCBI-ProteinID: QKV17381
UniProt: A0A6N1V8S4
LinkDB
Position
505091..506107
AA seq 338 aa
MSNPLSDLIAEKGVLLADGATGTNLFAMGLMSGDAPELWNVDHPERITKLHQDFVDAGSD
IILTNSFGGTRHRLKLHGAQDRVFELNKRAAEIARAVADKAPRKVIVAGSVGPTGELLIP
LGALSFEGAVEAFKEQIEGLKAGGADIAWIETMSSPDEIRAAAEAAIAAGMPYTFTASFD
TAGKTMMGLSPKDIFGVVANEPEQPVALGANCGVGAPDILSSLLDMSGANPDATLIVKGN
CGIPKFKGDEIVYSGTPELMAEYVHLAIDAGAKIIGGCCGTSCDHLKAMREALDHHQKGA
RPTLDDVVAKVGPLKNRAADTPGAGSARRERRGGRRRG
NT seq 1017 nt   +upstreamnt  +downstreamnt
atgtccaatccgctttccgacctgattgccgaaaaaggcgtgctgcttgccgacggggcg
accggcaccaacctgttcgcgatgggactcatgtccggcgacgcgccggagctctggaac
gtggaccatccggagcggatcaccaagcttcaccaggatttcgttgatgcggggtcggac
atcatcctgacgaactccttcggcggaacgcggcaccggctcaagctgcacggcgcgcag
gaccgggtgttcgagctgaacaagcgcgcagccgagatcgcgcgcgcggtggccgacaag
gcgccgcgcaaggtgatcgttgccggttccgtcggcccgaccggggaattgctgattccg
ctcggcgcgctcagcttcgagggggccgtcgaggcgttcaaggaacagatcgagggcctg
aaggccggcggcgcggacatagcctggatcgagaccatgtcgtcgcccgacgagatccgg
gccgccgcggaagccgcgatcgcggccgggatgccctacacgttcaccgcctccttcgac
acggcgggcaagacgatgatgggactctcgccgaaggacattttcggcgtcgtcgccaac
gagccggagcagccggtggccctcggcgccaattgcggcgtcggcgcgccggacatcctg
tcgtcgctgctcgacatgagcggggccaatccggacgccacgctgatcgtcaagggcaat
tgcggcattccgaaattcaagggcgacgaaatcgtctattccggcacgccggaactgatg
gcggaatatgtgcacctggcgatcgacgcgggcgcgaagatcatcggcgggtgctgcggc
acgtcatgcgaccatctcaaggcgatgcgcgaggcgctcgaccatcaccagaagggcgcg
cggccgacgctcgacgacgtggtggcgaaggtggggccgctgaagaaccgggcggccgac
acgcccggtgcaggctcggcgcggcgcgaacggcgcggcggccggcggcgcggctga

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