Mycoavidus sp. B2-EB: MPB2EB_1589
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Entry
MPB2EB_1589 CDS
T09873
Symbol
metH1
Name
(GenBank) methionine synthase
KO
K00548
5-methyltetrahydrofolate--homocysteine methyltransferase [EC:
2.1.1.13
]
Organism
myco
Mycoavidus sp. B2-EB
Pathway
myco00270
Cysteine and methionine metabolism
myco00450
Selenocompound metabolism
myco00670
One carbon pool by folate
myco01100
Metabolic pathways
myco01110
Biosynthesis of secondary metabolites
myco01230
Biosynthesis of amino acids
myco04981
Folate transport and metabolism
Brite
KEGG Orthology (KO) [BR:
myco00001
]
09100 Metabolism
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
MPB2EB_1589 (metH1)
09106 Metabolism of other amino acids
00450 Selenocompound metabolism
MPB2EB_1589 (metH1)
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
MPB2EB_1589 (metH1)
09150 Organismal Systems
09154 Digestive system
04981 Folate transport and metabolism
MPB2EB_1589 (metH1)
04980 Cobalamin transport and metabolism
MPB2EB_1589 (metH1)
Enzymes [BR:
myco01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.13 methionine synthase
MPB2EB_1589 (metH1)
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Gene cluster
GFIT
Motif
Pfam:
Met_synt_B12
Pterin_bind
B12-binding_2
B12-binding
Peptidase_M16_C
Motif
Other DBs
NCBI-ProteinID:
BBO60448
LinkDB
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Position
1787206..1789992
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AA seq
928 aa
AA seq
DB search
MTDATDLNRRAPHQIGIEPTLRLAGLEAFNIGAQTRFVNIGERTNVTGSKAFARMILNDQ
FDAALSVARQQVENGAQIIDINMDEAMLDSKAAMVRFLNLIAAEPDIARVPIMLDSSKWD
VLEAGLKCVQGKAIVNSISLKEGVEVFKQQAQSIRRYGAAAVVMAFDESGQADSFARKIA
ICERSYRILVKQVGFAPEDIIFDPNIFAIATGIDEHNNYAVDFIEATRWIKAHLPYAKVS
GGVSNVSFSFRGNDAVREAIHTVFLYHAIRAGMDMGIVNAGQLGIYAELDPPLRERVEDV
VLNRSVQTANGLSATERLLEITEQYKQGGGAKNQETLLWRQQSVKDRLAHALVHGITQFI
IEDTEAARQQYERPIQVIEGPLMDGMNRVGDLFGAGKMFLPQVVKSARVMKQAVAHLLPF
IEAEKNQLTAHGGDAKPKGKIVIATVKGDVHDIGKNIVSVVLQCNNFEVINMGVMVPCSE
ILAKAKAEKADMIGLSGLITPSLEEMAYVAAEMQRDEILRARNIPLLIGGATTSRVHTAV
KIAPHYDGPVIYVPDASRAVSVASSLLSETHSATYIAELKANYERIREQHANKKTQPMLP
LSQARANRHRIDWAATSPTKPKLIGRRVLKNYNLAELARYIDWGPFFQTWDLAGPFPAIL
TDPIVGEAARRVYEDAQNMLTQLIAGRWLTAHGVFALLPANTVHDDDIEIYTDGTRKHIA
LTWHTLRQQSERPIIDGPNQEKIRRPNRALADFIAPKETQIADYIGLFAVTAGLNIDKKV
QQFEQAQDDYSAIMLKALADRLAESFAERLHERIRKEFWGYAADEQLSHNELIHEKYVGI
RPAPGYPACPDHLVKHAMFSLMDCDKIDMQLTESLAMLPAASVSGFYLAHPDSTYFSVGK
IGADQLDDYARRTGLSVTDAQRALAALL
NT seq
2787 nt
NT seq
+upstream
nt +downstream
nt
atgacggacgccaccgaccttaaccgccgcgcccctcatcaaataggtattgaacccacg
ctgcgactcgctggtctcgaggcttttaatattggcgcgcaaacgcgcttcgtgaacatt
ggcgagcggaccaatgtcaccggttccaaagcgtttgcacgcatgatcctaaacgatcaa
ttcgacgcggctttaagtgttgcacgccaacaagtcgaaaatggcgcgcagatcatcgat
atcaatatggatgaagccatgctggattcaaaagccgcgatggtgcgctttttgaattta
attgcggccgagccagatatcgctcgcgtgccgattatgcttgactcctccaaatgggac
gtattagaagccggccttaaatgcgtgcaaggcaaagcgatcgttaactccatctcactt
aaagaaggcgtagaggtatttaagcaacaagcgcagtcgattcgccgttatggcgcagct
gccgttgtaatggcgtttgacgaaagcggtcaagccgatagttttgcgcgcaaaatagcg
atctgcgagcgtagctatcggattcttgtcaaacaagtcggcttcgccccagaagatatt
atttttgatccgaatatttttgcgattgcaaccggcattgatgaacataataattatgcg
gtcgattttatagaagcaacgcgctggatcaaagcccacttgccctacgctaaagtcagc
ggcggagtctcaaatgtatctttttcatttcgtggcaatgatgccgtgcgcgaagccatt
cacacggtttttctataccatgcaattcgtgccggcatggatatggggattgtcaacgcc
ggacagttgggaatttatgctgagctagacccccccctgcgcgaacgcgttgaagatgtc
gtgctcaaccgctcggtacaaactgcaaatggcctgagtgcaacggagcgtttactcgag
attaccgagcaatataagcaaggcggtggcgcaaaaaaccaagaaactctgctctggcga
caacaatccgtcaaagaccgcctagcccacgccttagtccacggcattactcagtttatt
attgaagacactgaagctgcgcgccaacaatatgaacgtccgatccaggtcattgaaggg
ccattaatggatggcatgaaccgggtcggcgacctgtttggcgcgggcaagatgtttcta
ccccaagttgtcaaatcagcccgcgtgatgaaacaagcggtagcacatctactacctttt
attgaagcagaaaaaaaccaactcaccgcacacggcggcgacgcaaaacccaaaggcaaa
attgtcattgcaaccgttaagggcgatgtgcatgatattggcaaaaatattgtctcggtt
gtcttgcagtgcaataattttgaagtcatcaatatgggcgtgatggtgccttgcagtgaa
attctcgccaaggccaaagctgagaaagccgacatgatcggcttatcagggttgatcaca
cccagtcttgaagaaatggcgtatgtcgccgctgaaatgcaacgcgacgaaatcttgcgc
gcccgcaacattcctcttttgatcggcggcgcaaccacttcacgcgtgcatactgcggtt
aagatcgcgccgcactatgacggccccgtgatctacgtaccggatgcttcgcgtgctgta
tccgttgcttccagcctgctttcagaaacgcattcggcaacttatattgctgaattgaaa
gcgaattatgagcgcattcgagaacaacacgcgaacaaaaaaacccaaccgatgttgcca
cttagccaagcacgggcaaatcggcaccgcattgattgggccgcgacctctcctacaaaa
cccaaattgattggccgccgcgtacttaaaaattacaacctggccgaacttgcgcgttac
attgattgggggccgttttttcaaacctgggatctggcgggcccatttccagcaattctc
actgaccccatcgttggcgaagccgcacggcgcgtatatgaagatgcgcaaaatatgctc
acgcaactgattgctggccgctggctgaccgcccatggggttttcgccttattaccggcc
aataccgtgcatgacgatgacattgagatctataccgatggcacccgcaagcatattgct
ctaacctggcatacgctgcgccaacaaagtgaacgcccaattattgatggcccgaatcaa
gaaaaaatccgccggccaaaccgcgccttagcggattttatcgcgccgaaagaaacccag
attgccgattatattggcctttttgccgtcactgctggcctcaatatcgataaaaaagtg
cagcaatttgaacaggctcaagatgactatagcgccatcatgcttaaggcgcttgccgat
cgtctggcggaaagttttgcggaacgcttgcatgaacgcatccgcaaagagttttggggc
tatgcggccgatgaacaactcagccataacgagttaatccacgagaaatacgtaggcatc
cgccccgcgcctggctatcctgcttgcccagaccacttagtaaagcacgctatgttcagc
ctgatggattgcgataagatagacatgcagctcaccgaatcgcttgccatgctgccagca
gcaagcgtctcaggtttttatttagcgcatcccgacagtacttatttctctgtcggtaaa
attggcgccgatcaacttgatgattatgcccgtcgtaccgggctatccgtcacggacgca
caacgcgcattagctgcactactttga
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