KEGG   Phocaeicola salanitronis: Bacsa_0021
Entry
Bacsa_0021        CDS       T01433                                 
Name
(GenBank) methionine synthase
  KO
K00548  5-methyltetrahydrofolate--homocysteine methyltransferase [EC:2.1.1.13]
Organism
bsa  Phocaeicola salanitronis
Pathway
bsa00270  Cysteine and methionine metabolism
bsa00450  Selenocompound metabolism
bsa00670  One carbon pool by folate
bsa01100  Metabolic pathways
bsa01110  Biosynthesis of secondary metabolites
bsa01230  Biosynthesis of amino acids
bsa04980  Cobalamin transport and metabolism
bsa04981  Folate transport and metabolism
Brite
KEGG Orthology (KO) [BR:bsa00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00270 Cysteine and methionine metabolism
    Bacsa_0021
  09106 Metabolism of other amino acids
   00450 Selenocompound metabolism
    Bacsa_0021
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    Bacsa_0021
 09150 Organismal Systems
  09154 Digestive system
   04981 Folate transport and metabolism
    Bacsa_0021
   04980 Cobalamin transport and metabolism
    Bacsa_0021
Enzymes [BR:bsa01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.13  methionine synthase
     Bacsa_0021
SSDB
Motif
Pfam: S-methyl_trans Pterin_bind B12-binding_2 B12-binding
Other DBs
NCBI-ProteinID: ADY34637
UniProt: F0R3V0
LinkDB
Position
22436..25186
AA seq 916 aa
MKTIQEQINERILVLDGAMGTMIQQYGLTEEDFRGERFREVPGMLKGCNDVLCLTRPDVI
ADIHRKYLDAGADIIETNTFNATRVSMADYHLEGYCAEINREAARLARRLADEYTAKNPE
KPRWVAGSVGPTNKTCSMSPDVNNPAYRALTFDGLAGAYLEQMTALLEGGVDTILIETIF
DTLNAKAAICAAEQAMERCGRKVPLMLSVTVSDTGGRTLSGQTLDAFLASVQHADIFSIG
LNCSFGARQLKPFLEQLARRAPYYISAYPNAGLPNTLGQYDQTPEEMEGEVKEYIDEGLV
NIIGGCCGTTEAYIRRFASLVEGRKPHQRVDASKYLWLSGLELLEVTPEINFVNVGERCN
VAGSRKFLRLINEKKYEEALSIARKQVEDGALVIDINMDDGLLDAAQEMTTFLNLIASEP
DIARVPIMIDSSKWDVILAGLKCVQGKGIVNSISLKEGEAVFIERARTIKRYGAAVIVMA
FDEKGQADTYERKIEVCSRAYRILTEQVGFRPQDIIFDPNVLAVATGMEEHNNYAVDFIR
ATGWIRKNLPGAHISGGVSNLSFAFRGNNYIREAMHAVFLYHAIAQGMDMGIVNPASSVL
YTDIPADILERIEDVVLNRRADAAERLIEMAEKLKTEKENAGAVQGAETHLAWRNGTDVD
SRLQYALVKGIGDYLEEDLQEALHTYPDAVSIIEGPLMEGMNRVGELFGSGKMFLPQVVK
TARTMKKAVSILQPYIEAQKKEGAKKAGKVLVATVKGDVHDIGKNIVSVVMACNNYEIID
LGVMVPAEKIVETAIREKVDIVGLSGLITPSLEEMVHVVRELDRAGVHIPVMIGGATTSK
LHTALKIAPVYHGPVIYMKDASLNAPVAARLLNPATHDAFVKELAGEYEALREGNKEKQV
RLTSLEEARKNKLELF
NT seq 2751 nt   +upstreamnt  +downstreamnt
atgaaaacaatacaagaacagataaacgaacgtatcttggtgctggacggggcgatggga
accatgattcagcaatacggactgacggaagaggatttccgtggagaacggttccgcgag
gtgcccggcatgttgaaaggatgcaacgatgtgttgtgtctgacccgtccggatgtgata
gcagatatacatcgcaagtatttggatgccggtgccgatattatcgagaccaataccttc
aatgccacccgtgtgtcgatggcagattatcatttggaagggtattgtgcggaaatcaac
cgtgaggcggcacgtctggcacgccggcttgccgatgaatatacggcaaagaatccggag
aagccgcgttgggtggcagggtcggtaggccctaccaacaagacctgctcgatgagtccc
gatgtgaacaatcctgcttaccgtgccctgaccttcgacgggcttgccggggcttatctg
gaacagatgacggcattgctggaaggtggggtagacacgattctgatagaaaccattttt
gataccttgaatgcgaaggcggctatctgtgccgcagaacaggcgatggagcgatgcggc
cgcaaggtgcctctgatgctttcggtcacggtctcggatacgggcggacgtaccctttcg
ggacaaacgcttgacgcattcctggcttcggtacagcatgccgatatcttctctatcggg
ttgaactgttcgttcggtgcccgtcaattgaaaccatttctggagcaacttgcccgccgc
gcgccttattatatcagtgcatatcccaatgccgggcttcccaatacgctgggacaatac
gaccagactcccgaagaaatggagggggaagtaaaagagtacatcgatgagggcttggtg
aacatcatcggtggatgctgcggaacgaccgaagcctatatccggcggtttgcttcgctg
gtggaaggcagaaaaccgcatcaacgggtcgatgcttcgaagtatttatggctttcgggc
ttggaattgctggaagttacgcccgaaatcaatttcgtcaacgtaggcgagcggtgtaat
gtggcaggttcgcgtaagttccttcggctgattaatgaaaaaaaatacgaggaagctttg
tccatcgcccgcaagcaggtggaggacggagcgttggtgattgacatcaatatggacgac
ggtctgctggatgccgctcaggagatgaccaccttcctgaacctcatcgcatcggaaccc
gatatcgcgcgcgtacctattatgatagactcgtccaagtgggatgtgatacttgccgga
ctgaaatgcgtgcagggcaaaggcattgtcaattccatttcgttgaaagaaggcgaagcg
gtctttatcgaacgtgcccgtaccatcaagcgttatggagcggcggttattgtcatggct
tttgatgagaaagggcaggcggatacctacgagcggaagatagaagtgtgtagccgcgcg
taccggattttgacggagcaagtaggcttccggccgcaagacatcatcttcgaccccaac
gtgctggcggtagctacggggatggaagaacataacaattatgccgtcgactttatccgt
gctacgggctggattcggaagaacttgccgggagcgcatatcagcggcggggtcagcaac
ctgtctttcgctttccggggaaataattacatccgcgaggcaatgcatgccgtgttcctt
tatcatgcgattgcgcaaggcatggatatgggcatcgtcaatccggcatcttcggtgctt
tataccgatattcctgccgatattttggaacgtatcgaagacgtggtgctgaaccgccgt
gccgatgcagccgaacggttgatagaaatggcggagaagctgaagacggagaaagagaat
gccggagccgtgcaaggagcagagacacatctggcgtggagaaacggcacggatgtagat
tcgcgtttgcaatacgcattggtgaaaggcatcggcgattatctggaagaagacttgcaa
gaggctttgcatacataccccgatgcggtgagtatcatcgaaggcccgttgatggaaggc
atgaaccgggtaggggagctgtttggttcgggcaagatgtttttgcctcaggtcgtgaaa
acggcacgcacgatgaagaaggcggtatccatcttgcagccttacatcgaagcgcagaag
aaagaaggggcgaagaaggcgggcaaggtactggtagctacggtaaaaggtgatgtgcac
gacatcgggaagaatatcgtgtcggtcgtgatggcgtgcaacaattacgaaatcattgac
ctgggtgtgatggttcccgccgagaagattgtagaaacggcgatacgtgagaaagtcgac
atcgtaggattaagcggattgataaccccttcgttggaggaaatggtgcatgtggtgcgc
gagctcgaccgtgccggcgtgcatattccggtgatgattggaggggccacgacttcaaag
cttcatacggcactgaagatagctccggtctatcacgggccggtaatttatatgaaagat
gcatcgctgaatgctcccgttgccgcccgcttgctgaatccggcaacgcatgatgctttt
gtaaaagaattggcaggtgaatatgaggcattgcgcgaaggcaacaaagagaaacaagta
agacttacctctctggaagaagcccggaaaaacaagctggagcttttttaa

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