Fidelibacter multiformis: FMIA91_06140
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Entry
FMIA91_06140 CDS
T10786
Symbol
metH
Name
(GenBank) methionine synthase
KO
K00548
5-methyltetrahydrofolate--homocysteine methyltransferase [EC:
2.1.1.13
]
Organism
fml Fidelibacter multiformis
Pathway
fml00270
Cysteine and methionine metabolism
fml00450
Selenocompound metabolism
fml00670
One carbon pool by folate
fml01100
Metabolic pathways
fml01110
Biosynthesis of secondary metabolites
fml01230
Biosynthesis of amino acids
fml04980
Cobalamin transport and metabolism
fml04981
Folate transport and metabolism
Brite
KEGG Orthology (KO) [BR:
fml00001
]
09100 Metabolism
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
FMIA91_06140 (metH)
09106 Metabolism of other amino acids
00450 Selenocompound metabolism
FMIA91_06140 (metH)
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
FMIA91_06140 (metH)
09150 Organismal Systems
09154 Digestive system
04981 Folate transport and metabolism
FMIA91_06140 (metH)
04980 Cobalamin transport and metabolism
FMIA91_06140 (metH)
Enzymes [BR:
fml01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.13 methionine synthase
FMIA91_06140 (metH)
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
S-methyl_trans
Pterin_bind
Met_synt_B12
B12-binding_2
B12-binding
CdhD
SpoIVA_C
GlnR_1st
PSD5
Motif
Other DBs
NCBI-ProteinID:
BFN36735
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Position
728874..732260
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AA seq
1128 aa
AA seq
DB search
MTISRKAFHDYLTRGVCIIDGAMGTLIDDAGLKPEDYAGHEGCPEMLNVSRPDLIESIHR
QYLDAGANIIETNTFGANALVLKEHGLEDRVYELNVAGVQRARKAINALKTKEDFHLVAG
SVGPGSRMPSLNHVSPDTIYTAYQAQIQGLTDGGVDLLIIETAQDLLHVKTLVRLILDIA
PDIPLIVSVTIESTGTMLAGSDIPAVVTALSPYPLSALGLNCATGPEGMRSHLRQLSELS
PFPVFAMPNAGLPVHKKGRFVYELEPEKMALEIKTFVQDMGASIVGGCCGSTPDHIRCIA
DKAGKVQNTYSRKVSGESSVSSLYQSQAVRVEPAPLLIGERANANGSRAFRKALHEEDWD
TMMSIVNGQEQEGAHVVDVSLSVVGRNEKTDMDYFFRRLNTECRLPLQIDSTDPVVIETA
LKRCAGRCIVNSANLENGEEAFLSMARLCKQYGAMLICLTIDEEGMAKTAGRKCAVAGRM
IKLAEKAGLSRQDLFMDPLTFTLASGEDADRNTAVETLRAVKEIRESFPEVHLLLGVSNV
SFGLKPRIRHMLNSVMLYEAVQAGIHAAIIHPGKIMPLPDIPDPLQKLCRQLIFNDSSEE
DPLIHLIQAGGEDIPQEDLTNQEDISPEDLLKKKLLHGDSSGLEKVLMALKNNISPLNII
NDILLPGMKEIGELFGSGKMQLPFVLKSASVMKKAVDILKPFMDKNESMIQGTVILATVR
GDVHDIGKNLVDVVLSNNGFIVHNIGIRQTPEAVLNAVQTIQPNALGLSGLLVRSTLEMK
NTLIVLKENHITIPVLLGGAALTESFVREELAPVYEGNVFYAADAFRGLSILNALDEKTE
EKNILQNKKKKEKSSFEKEECRQTGLSAYEYPGPPVEGVQIRQEIDLDTLVNYLNRKTLF
TFQWQLRKGKMSREEYETFLKEEGEERLEEMLHRDEIRKSFHPRAVYAFCLVQRQSDTVL
SMHLPGSSERCNLSFPRQDKGECLSVIDYFLPDREGLLPIQCVTMGDEAVRTSRRLYTSH
DYAEYFFYHGLLMQLTEALAEENHARIRHELSLDKHKAETYQKPGTFQGIRISPGYPMAP
GLESQKTILKLLKTSDIGVSLTSGYQLVPECSTTALILIHPEAKYFKI
NT seq
3387 nt
NT seq
+upstream
nt +downstream
nt
atgaccatcagcagaaaagcttttcacgattatcttacccggggcgtttgcatcattgac
ggagccatggggactctgattgatgatgccggtttaaagccggaagattatgccggtcac
gaaggatgtcctgaaatgttgaatgtttcccggccggaccttattgaatccattcaccgg
cagtatctggatgccggggccaatatcattgaaacaaatacctttggggccaatgccctg
gttctgaaggagcacggtttggaagaccgggtctatgagttgaatgtagcaggagtccaa
cgggccaggaaagctatcaatgctttgaagacaaaggaggatttccacctggtggccgga
tcggtgggacctggtagccggatgccctccctgaaccatgtgagtcccgacaccatttac
acagcctaccaagctcagattcagggtctgaccgacggaggtgttgatctgctcatcatt
gaaacagctcaggatttgctccatgttaagaccctggtccggcttattttggatattgca
ccggatattcccctgatcgtttctgttactatcgaatctacaggcaccatgttggccgga
tctgatattcccgcggtggtcactgccctgtctccttatcccttgtctgctttgggactc
aattgtgcaacgggtcctgaagggatgcgttctcatctgcgccaattatctgaattgtca
ccctttccggtatttgccatgcccaatgcaggcttgccggttcataaaaaagggcgtttt
gtgtatgaactggagccggaaaagatggctttggaaatcaaaacttttgtgcaggatatg
ggtgcttccattgtcggcgggtgttgcggttccacacccgatcatatccgctgtattgca
gataaagccggtaaagtgcaaaacacatactcccgtaaagtctctggtgagtcaagcgtt
tcatccctgtatcaaagtcaggctgtccgggtagaaccggcgccccttctgattggggaa
cgggccaatgccaatggatcccgggctttccgaaaagcattgcatgaggaagactgggat
accatgatgtccatagtgaacggacaggagcaggaaggggctcatgtagtagatgtttcc
ctttccgttgttgggcggaatgaaaaaacagatatggattattttttccgccgattgaac
acggaatgccgccttcccctgcaaattgacagcaccgatcccgtggtaattgaaacggcc
ctgaaacggtgtgccggtcggtgcattgtgaattcagccaacctggaaaacggagaagag
gcttttctttccatggcccggctttgcaaacaatacggagccatgctgatttgcctgacg
attgatgaagagggcatggccaaaacagccgggcggaagtgtgccgttgccggccggatg
attaaactggcggaaaaggccggactcagcagacaggatctctttatggatccccttacc
tttaccctggcaagcggagaagatgcggaccggaatacggcagtggaaacccttagggct
gtaaaagaaatccgggaatctttcccggaggtccatctgctgctgggggtaagcaatgtt
tcttttggattgaaaccccggatccggcatatgctgaactcggtcatgttgtatgaggcg
gtacaagccgggatacatgcagccatcatccatcccggaaaaattatgccccttccggat
atccccgatccgctacaaaagctatgccgtcaacttattttcaatgattcgtcggaagag
gatcctttgattcacctgattcaggccggaggagaagatattccacaggaagatttaaca
aatcaggaagatatttcaccggaagaccttttaaagaaaaaactgctccatggggattct
tccggacttgagaaggtgctgatggcgttaaaaaataacatttctcccctgaatatcatc
aatgatatcctgttaccgggcatgaaggaaatcggtgaactttttggatcaggtaaaatg
cagctcccctttgtcctgaaatcggcatccgttatgaaaaaagcggtggatatcctgaaa
cccttcatggataaaaacgaaagcatgatccagggtacggtgatcctggcaacagtacgg
ggcgatgtgcatgatattgggaaaaatctggtggatgtggttttatccaataatggattt
atcgttcataatatcggtattcgacaaacacccgaagcggtgttgaatgctgtccagacg
attcaacctaatgctcttgggctcagcggacttctggtccggtctacccttgaaatgaaa
aataccctgatagtgctgaaagaaaatcacatcactattcctgttttacttggaggtgcc
gctttgacggaatcttttgtccgtgaagagttggcacctgtatatgaaggtaacgttttt
tacgccgccgatgcgttccggggcttgtctatcttgaatgccctggatgagaagacagaa
gaaaaaaatatccttcaaaataaaaaaaagaaggaaaaaagttcatttgaaaaagaagaa
tgccgtcaaaccgggctctctgcctatgagtatcccggtccgcctgttgagggtgtgcag
atccggcaggaaatcgatctggatacacttgtaaactatttgaaccgtaaaaccctgttt
acctttcagtggcagttgcgcaaagggaaaatgtcccgtgaagaatatgaaactttttta
aaggaagaaggggaagaacgcctggaggaaatgcttcatcgggatgaaatccggaagtct
ttccatcccagagctgtgtatgccttttgtctggttcaaagacagtcggatacagtgctt
tcaatgcatcttcccggcagttccgaaagatgtaatctgtcttttccacggcaggacaag
ggtgagtgtctttccgtgatcgattactttttaccggaccgggagggacttctgcccatt
caatgcgtgaccatgggtgatgaagccgtccgtaccagccgccgtttgtatacatcccat
gactatgccgaatatttcttttatcatggacttttaatgcaattgaccgaggctctggct
gaagaaaaccatgcccggattcgccatgaactgagtctggataaacataaagcggaaaca
tatcaaaaacccggaacttttcaggggatccgaatcagtccgggttatcccatggcacct
ggacttgaaagtcaaaagacgattcttaagcttctgaaaacttcagatatcggtgtcagt
cttacctcaggatatcaactggtaccggaatgctctacaactgccttgatactgattcat
cccgaagcaaaatactttaaaatataa
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