Entry
Symbol
metH
Name
(GenBank) Bifunctional homocysteine S-methyltransferase/5,10-methylenetetrahydrofolate reductase
KO
Organism
saur Staphylococcus aureus Bmb9393 (MRSA)
Pathway
saur01110 Biosynthesis of secondary metabolites
saur01120 Microbial metabolism in diverse environments
Module
saur_M00017 Methionine biosynthesis, aspartate => homoserine => methionine
Brite
KEGG Orthology (KO) [BR:saur00001 ]
09100 Metabolism
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
SABB_02272 (metH)
09106 Metabolism of other amino acids
00450 Selenocompound metabolism
SABB_02272 (metH)
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
SABB_02272 (metH)
Enzymes [BR:saur01000 ]
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)
SABB_02272 (metH)
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.13 methionine synthase
SABB_02272 (metH)
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SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
complement(420834..422654)
Genome browser
AA seq
606 aa AA seq DB search
MKDNVLVADGAIGTILYSEGLDTCPEAYNLSHPDKVERIHRSYIEAGADVIQTNTYGANF
EKLKRFGLEDKVKAIHQAAVRIAKKAANKDTYILGTVGGFRGIKQEDISLQTILYHTEIQ
IDTLIEEGVDALLFETYYDLEELTNVISRTRKKYDIPIIAQLTASNTNYLVNGQAINEGL
KQLVQCGANIVGLNCHHGPHHMQESFTHIELPEHAFLSCYPNASLLDIENSEFKYSDNAQ
YFGQVAQNLIREGVRLIGGCCGTTPEHIKFIKESIQTLKPVNDKKVIPIPTKALFNPSQN
KVRQSLTSKVQERPTVIIELDTPKHLDTDRFFENIAKLDKANVDAVTLADNSLATVRISN
IAAASLIKQYYNIEPLVHITCRDRNLIGLQSHLLGLSLIGVNEILAITGDPSKVGHLPGA
TNVYDVNSKGLTELALRFNQGINTDGDALKKRTHFNIAGAFNPNVRKLYGAVKRLEKKIE
SGMSYFITQPVYSKEKIIEIYHATKHLNKPFFIGIMPIASYKNALFLHNEVPGIKMSDEI
LQQFEAVKDDKAKTRELSLKLSKDLIDTVHEYFNGLYIITPFQNVEDSLELAAYSKSITA
HKEAIL
NT seq
1821 nt NT seq +upstream nt +downstream nt
ttgaaagataatgttttagtagctgatggcgctataggaaccattttatactctgaagga
ttagacacctgtccagaagcatataatcttagccatccagataaagttgaacgcatccat
cgttcatatattgaagccggtgctgatgtcattcaaaccaatacttatggtgcaaatttt
gaaaagttaaaacgattcggtcttgaagataaagttaaagcaatacatcaagccgccgtt
cgcatcgcaaaaaaagcagcaaataaagatacgtatatattaggcacagttggtgggttt
agaggtatcaaacaagaggatatcagcttacaaactattctttatcatactgaaattcaa
atagacaccttaattgaagaaggcgttgacgcgctacttttcgaaacgtattacgaccta
gaagagttaacaaatgtcatttcacgaacgagaaagaaatacgacattccaatcattgct
caattaaccgcttcaaacacaaattacttagttaatggtcaggcaatcaatgaaggatta
aaacaactcgttcaatgtggtgcaaacatcgtgggactcaattgtcatcatggcccgcac
catatgcaagagtctttcacacatattgaattaccagagcacgcattcttatcttgttat
ccaaatgccagcttattagatattgaaaatagtgaatttaagtatagtgacaatgcacaa
tatttcggtcaagttgctcaaaatctaattcgcgaaggtgttcgtttaattggtggttgc
tgtggtacaacgccagagcacatcaaatttattaaagaatctattcagacacttaaacct
gttaatgacaaaaaagtgattccgataccaacgaaagcacttttcaatccatctcaaaat
aaagttagacaatcattaacatctaaggttcaagaacgtccaaccgttattatcgaattg
gatacaccgaaacatttagacacggatagattttttgaaaatatcgctaaacttgataaa
gctaatgtagatgcggtaacactcgcagataattcattggcaactgtcagaattagcaat
attgctgctgctagcttaattaagcaatattacaatattgaaccactcgtacatattaca
tgtcgagaccgaaacttaatcggcttgcagtcccatttacttggattatcgctcattggc
gttaacgaaatattagccataactggtgatccttcaaaagttggtcacttaccaggtgca
accaatgtctatgatgttaattctaaaggattaactgaactcgctctaagatttaatcaa
ggtattaacactgacggtgatgcgctgaagaaacgtacacacttcaacatcgctggcgcc
tttaaccctaatgttcgtaaattatatggtgccgtcaaaagattagagaaaaagatagaa
agcggaatgtcttattttataacacaacccgtgtacagcaaagagaaaatcattgaaatt
taccatgccactaagcacttgaacaaaccatttttcataggcattatgcctatcgcaagt
tacaaaaacgcactctttttgcataatgaagtgccaggaatcaagatgtcagatgaaatt
ttacaacaatttgaagcagttaaagatgataaagccaaaacacgagaactaagtcttaag
ctttcaaaggatttaatcgatactgttcatgaatattttaatggtttatacattatcaca
ccgtttcaaaatgtcgaagattcattagaacttgcagcatactcaaaatctattactgct
cacaaggaggcaatattatga