Pseudomonas alvandae B21-020: LOY40_10740
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Entry
LOY40_10740 CDS
T08625
Symbol
metH
Name
(GenBank) methionine synthase
KO
K00548
5-methyltetrahydrofolate--homocysteine methyltransferase [EC:
2.1.1.13
]
Organism
pcas
Pseudomonas alvandae B21-020
Pathway
pcas00270
Cysteine and methionine metabolism
pcas00450
Selenocompound metabolism
pcas00670
One carbon pool by folate
pcas01100
Metabolic pathways
pcas01110
Biosynthesis of secondary metabolites
pcas01230
Biosynthesis of amino acids
pcas04980
Cobalamin transport and metabolism
pcas04981
Folate transport and metabolism
Module
pcas_M00017
Methionine biosynthesis, aspartate => homoserine => methionine
Brite
KEGG Orthology (KO) [BR:
pcas00001
]
09100 Metabolism
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
LOY40_10740 (metH)
09106 Metabolism of other amino acids
00450 Selenocompound metabolism
LOY40_10740 (metH)
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
LOY40_10740 (metH)
09150 Organismal Systems
09154 Digestive system
04981 Folate transport and metabolism
LOY40_10740 (metH)
04980 Cobalamin transport and metabolism
LOY40_10740 (metH)
Enzymes [BR:
pcas01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.13 methionine synthase
LOY40_10740 (metH)
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Met_synt_B12
S-methyl_trans
Pterin_bind
B12-binding_2
B12-binding
ComA
Motif
Other DBs
NCBI-ProteinID:
UVM74600
LinkDB
All DBs
Position
complement(2366225..2369935)
Genome browser
AA seq
1236 aa
AA seq
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MSDRSARLYLLQQALKERILILDGGMGTMIQSYKLEERDYRGKRFADWPSDVKGNNDLLV
LTRPDVIGAIEKAYLDAGADILETNTFNATQVSQADYGMQGLAYELNLEGARLARKVADE
KTLETPDKPRFVAGVLGPTSRTCSLSPDVNNPGYRNVTFDELVENYTEATKGLIEGGADL
ILIETIFDTLNAKAAIFAVQGVYEELGVELPIMISGTITDASGRTLSGQTTEAFWNSVAH
AKPISVGLNCALGASELRPYLEELSNKASTHVSAHPNAGLPNEFGEYDELPEDTAKVIEE
FAQSGFLNIVGGCCGTTPAHIEAIAKAVAGYAPRQIPEIPRACRLSGLEPFTIDRSSLFV
NVGERTNITGSAKFARLIREDNYTEALEVALQQVEAGAQVIDINMDEGMLDSKKAMVTFL
NLIAGEPDISRVPIMIDSSKWEVIEAGLKCIQGKGIVNSISMKEGVEQFIHHAKLCKRYG
AAVVVMAFDEAGQADTEARKKEICKRSYDILVNEVGFPPEDIIFDPNIFAVATGIEEHNN
YAVDFINACAYIRDELPYALTSGGVSNVSFSFRGNNPVREAIHSVFLLYAIRAGLTMGIV
NAGQLEIYDQIPVELRDAVEDVILNRTPEGTDALLAIADKYKGDGSVKEAETEEWRGWEV
NKRLEHALVKGITTHIVEDTEESRLSFTRPIEVIEGPLMAGMNIVGDLFGAGKMFLPQVV
KSARVMKQAVAHLIPFIEAEKGDKPEAKGKILMATVKGDVHDIGKNIVGVVLGCNGYDIV
DLGVMVPAEKILQVAKEQKCDIIGLSGLITPSLDEMVHVAREMQRQDFHLPLMIGGATTS
KAHTAVKIEPKYSNDAVIYVTDASRAVGVATQLLSKELKPAFVEKTRQDYIEVRERTSNR
SARTERLSYPAAVAKKPQFDWSSYQPVKPTFTGARVLDDIDLNVLAEYIDWTPFFISWDL
AGKYPRILTDEVVGEAATALYADARALLRKLIDEKLISARAVFGFWPANQVHDDDLEVYG
DDGKPLARLHHLRQQIIKTDGKPNFSLADFVAPKDSGITDYVGGFITTAGIGAEEVAKAY
QEAGDDYNSIMVKALADRLAEACAEWLHQQVRKEHWGYAKDEHLDNEALIKEQYTGIRPA
PGYPACPDHTEKATLFRLLDPEASEMKAGRSGVFLTEHYAMFPAAAVSGWYFAHPQAQYF
AVGKIDKDQVQSYTARKGQDLSVTERWLAPNLGYDN
NT seq
3711 nt
NT seq
+upstream
nt +downstream
nt
atgtccgatcgcagcgctcgcctctatcttctccagcaagccctcaaggaacgcatcctg
atcctcgacggcggcatgggcacgatgatccagagctacaagctggaagaacgggactat
cgcggcaaacgcttcgccgactggccgagcgacgtcaagggcaacaacgatttgctcgtg
ctgactcgccccgacgtgatcggtgccattgagaaggcctacctggatgccggcgccgac
atcctggaaaccaacactttcaacgccacccaggtgtcccaggccgactacggcatgcag
ggcctggcctacgagctgaacctggaaggcgcacgcctggcccgcaaggtggccgacgaa
aagaccctggaaaccccggacaagccgcgcttcgtcgccggcgtgctcggcccgaccagc
cgcacctgctcgctgtcgccggatgtgaacaaccccggctaccgcaacgtgaccttcgat
gagctggtggagaactacaccgaggccaccaagggcctgatcgaaggcggcgccgacctg
atcctgatcgagaccatcttcgacacactcaacgccaaggccgcgatcttcgccgtgcaa
ggcgtctacgaagaactgggcgtcgagctgccgatcatgatttccggcaccatcaccgac
gcctccggccgtaccctctccggccagaccaccgaagccttctggaactcggtggcccac
gccaagcccatttccgtcggcctgaactgcgccctcggcgccagcgaactgcgcccgtac
ctggaagagctgtcgaacaaggccagcacccacgtatcggcccaccccaacgccggcctg
cccaacgaattcggtgaatacgatgaattgccggaggacaccgccaaggtcatcgaagaa
ttcgcccagagcggtttcctgaacatcgtcggcggctgctgcgggaccaccccggcgcac
atcgaggccatcgccaaggccgtggccggctatgcgccgcggcagattccggaaatccca
cgggcgtgccgcctgtcaggcctggaaccgttcaccatcgatcgcagctcgctgttcgtc
aacgtcggcgagcggaccaacatcaccggttccgccaagttcgcccggctgatccgcgag
gacaactacaccgaagccctggaagtcgccctgcaacaagtcgaggccggcgcccaggtg
atcgacatcaacatggacgagggcatgctcgattcgaagaaggccatggtgaccttcctc
aatctgattgccggcgaaccggacatttcccgggtgccgatcatgatcgactcctccaag
tgggaagtgatcgaagcgggcctcaagtgcatccagggcaagggcatcgtcaactccatc
agcatgaaggaaggcgtcgagcagttcatccaccacgccaagctgtgcaagcgctacggc
gccgccgtggtggtgatggccttcgacgaagccggccaggccgacaccgaggcgcgcaag
aaggaaatctgcaagcgctcctacgacatcctggtcaacgaagtcggcttcccgccggaa
gacatcatcttcgacccgaacatcttcgccgtcgccaccggcatcgaagagcacaacaac
tatgccgtggacttcatcaacgcctgcgcctacatccgcgacgagctgccctacgcgctg
acctccggcggcgtgtccaacgtgtccttctcgttccgtggcaacaacccggtgcgcgag
gcgatccactcggtgttcctgctgtacgcgatccgcgcgggcctgaccatgggcatcgtc
aacgccggccaactggaaatctacgaccagatcccggtggaactgcgcgacgcggtggaa
gacgtgatcctcaaccgcacccccgaaggcaccgacgccctgctcgccatcgccgacaag
tacaagggcgacggcagcgtcaaggaagcggaaaccgaagagtggcgcggctgggaagtg
aacaaacgcctggagcatgcgctggtcaagggcatcaccacccacatcgttgaagacacc
gaggaatcgcgactgtcgttcacccgcccgatcgaggtcatcgagggcccgctgatggcc
ggcatgaacatcgtcggcgacctgtttggcgccggcaagatgttcctgccccaagtggtc
aagtccgcccgcgtgatgaagcaggccgtggcccacctgatcccgttcatcgaggcggaa
aaaggcgacaagccggaagccaagggcaagatcctcatggccacggtcaagggcgacgtg
catgacatcggcaagaacatcgtcggcgtcgtgttggggtgcaacggctatgacatcgtc
gacttgggcgtgatggtgccggcggagaaaatcctccaggtggccaaggaacagaagtgc
gacatcatcggcctgtccggcctgatcaccccgtccctggacgagatggtgcacgtggcg
cgggagatgcagcgccaggacttccacctgccgttgatgatcggcggtgctacgacctcc
aaggcccatacggcggtgaagatcgagcccaagtacagcaacgacgcggtgatctacgtc
accgacgcctcccgcgccgtgggcgtggcgacccagttgctgtccaaggagctgaagccg
gcgttcgtcgagaaaacccgccaggactacatcgaggtgcgcgagcgcacttcgaaccgc
agcgcccgcaccgaacgcctgagctacccggcggccgtggcgaagaagccgcagttcgac
tggagcagctaccagccggtcaagccgaccttcactggcgcacgggtgctggacgacatc
gacttgaatgtcctggccgaatacatcgactggacgccgttcttcatttcctgggacctg
gccggcaaatacccgcgcatcctcaccgacgaagtggtcggcgaagcggccacggcgttg
tacgccgacgcccgggcgttgctgcgcaagctgatcgacgagaaactcatcagcgcccgc
gccgtgttcggcttctggccggccaaccaggtgcatgacgacgacctggaagtctatggc
gacgacggcaagccactggcacgcctgcatcacctgcgccagcagatcatcaagaccgac
ggcaagccgaacttctccctggccgacttcgtcgcgccgaaggacagtggcatcaccgat
tacgtcggcggcttcatcaccaccgccggcatcggcgccgaagaagtcgccaaggcgtat
caagaagccggcgacgactacaactcgatcatggtcaaggccctggccgaccgcttggcc
gaagcctgtgccgaatggctgcaccagcaggtgcgcaaggaacattggggttacgccaag
gacgaacacctggacaacgaggcgctgatcaaggagcagtacaccggcatccgccctgct
cccggctacccggcctgcccggatcacaccgagaaagccaccttgttccgcctgcttgat
cccgaggccagtgaaatgaaagccgggcgcagcggcgtgttccttaccgagcactacgcc
atgttcccggcagcggcggtcagcggctggtacttcgcccatccccaggcgcagtatttc
gccgtgggcaagatcgacaaggatcaggtgcagagctataccgcacgcaaagggcaggat
ctcagcgtgacggagcgttggttggcgccgaacctgggttacgacaactga
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