Entry
Name
(RefSeq) bifunctional homocysteine S-methyltransferase/5,10-methylenetetrahydrofolate reductase
KO
Organism
lmo Listeria monocytogenes EGD-e (serotype 1/2a)
Pathway
lmo00270 Cysteine and methionine metabolism
lmo01110 Biosynthesis of secondary metabolites
lmo01120 Microbial metabolism in diverse environments
Module
lmo_M00017 Methionine biosynthesis, aspartate => homoserine => methionine
Brite
KEGG Orthology (KO) [BR:lmo00001 ]
09100 Metabolism
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
lmo1678
09106 Metabolism of other amino acids
00450 Selenocompound metabolism
lmo1678
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
lmo1678
Enzymes [BR:lmo01000 ]
1. Oxidoreductases
1.5 Acting on the CH-NH group of donors
1.5.1 With NAD+ or NADP+ as acceptor
1.5.1.54 methylenetetrahydrofolate reductase (NADH)
lmo1678
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.13 methionine synthase
lmo1678
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Motif
Motif
Other DBs
LinkDB
All DBs
Position
complement(1732926..1734779)
Genome browser
AA seq
617 aa AA seq DB search
MNLRKDLSEKVLIADGAMGTLLYSYGVDRSFEELNLSHPEDIVAIHKAYIGAGADIIQTN
TYGANYIKLARYGLEDEVKRINQAAIRLAKEAARGTGTYIFGTIGGINGAVDARLPAAPL
EEIKRSFREQLYCFLLDGVDAILLETYYDLDELKTVLKILRETTDLPVVANVSMHEPGIL
QNGKKLPDALEELIALGADVVGINCRLGPYHMARALETVPLYDNAYLAVYPNASLPEMQE
GKVIYQSDTDYFEHYGEVFRQEGARIIGGCCGTTPDHIRALRKGLETTKPILEKEVRPIL
ELVPEEVEDVDSGERLLDKVKERLTILVELDPPRTFDTTKFFEGAQALDEAGVDAITISD
NSLATPRISNMALASILKHEYGIKPLIHLTTRDHNLVGMHSHVMGFHKLGLHDVLAITGD
PTKVGDFPGASSVFDLRSVELVQLIKKFNDGISYTGKSLKEKARFHVGAAFNPNVLNLEK
AVRLIERKVEYGADYIITQPIYDVNKAILLKEALQKANIDVPLFIGVMPLLSSRNAEFLH
NEVPGIRLTDDVRERMREAEEHGHANEEGMAIARELVDAICEHFQGIYIITPFLRYDLSI
ELAKYAQNKQQVQIGSK
NT seq
1854 nt NT seq +upstream nt +downstream nt
gtgaatttaagaaaagatttaagcgaaaaagtattaattgctgacggtgcgatgggcact
ttgctttattcttatggagtggatcgttcgtttgaggagctaaatttgtctcatccggaa
gatattgttgcgattcataaagcgtacattggtgctggggcggatattatccaaacgaat
acgtatggcgcaaattatattaaattagcgcgatatggtttagaggatgaagtgaagcgt
attaatcaagcagctattcgattggcaaaggaagcggcaagagggactggaacgtatatt
tttgggacgattggcggaataaatggcgctgtagatgcaagacttccggcggctccactc
gaagaaatcaagcgaagttttagggagcagctatactgttttttgttagatggcgtggat
gcgattttgctagaaacatattatgatttagatgagcttaagacagtgttgaaaattctt
cgcgagactactgatttaccagtagttgcgaatgtttctatgcatgaaccgggtattttg
caaaacgggaaaaaattgccggatgcgctggaagagcttattgcgctgggggcggatgta
gttggtattaattgccgtcttggtccgtatcacatggcgcgtgctcttgaaacagtgccg
ctgtatgataatgcttatttggcagtttatcccaatgctagtttgccagagatgcaagaa
ggaaaagtgatttatcagtctgatacggattattttgaacattatggggaggtttttcgg
caagaaggcgctcggattattggtggttgttgtggcacgacgccagatcatatccgcgct
ttgcgaaaaggtcttgaaacaacaaaacccattttggaaaaagaagttcggccgattttg
gaacttgttccagaagaagtggaggatgtggattctggtgaacgtttgcttgataaagtg
aaggaacgtttaacgattttggttgaactagatccgccgcggacttttgatacgacgaaa
ttttttgaaggagcccaggcacttgacgaggcaggcgttgatgcgattacgatttcggat
aattcgcttgccacgccgcggattagtaatatggcgctagcttcgattttgaagcatgaa
tatggtattaaaccactcattcatttgacgacgcgggatcataatttggttgggatgcat
tcgcatgtgatgggatttcataaattggggctgcatgatgtgcttgcgattacaggtgat
ccaactaaagtaggtgatttccctggagcatcttcggtgtttgatttaaggtctgtggaa
ttagttcagctaattaaaaagttcaatgatgggatttcttatactgggaaatcactgaaa
gaaaaggcacgattccatgttggagcggcatttaatccgaacgtgctgaacttagagaaa
gcggttaggttaattgagcgaaaagttgaatatggtgccgattatattattacacagcca
atttatgatgtgaataaagctatcttattaaaagaagccttgcaaaaagcaaatattgat
gtgccactttttattggggttatgccattattgtctagtcggaatgcggaatttctgcat
aatgaggttcccgggattcgtttgacagatgatgtacgggagcgaatgagagaggcggaa
gagcacggtcatgcaaatgaagaaggcatggcaattgctcgtgaattagtggatgcgatt
tgtgagcatttccaagggatttatattattacgccatttttacgatatgatttatcgata
gaattagcgaaatatgcccaaaataaacagcaagtccaaattgggtctaaataa