Alkalicella caledoniensis: HYG86_14515
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Entry
HYG86_14515 CDS
T07204
Name
(GenBank) cobalamin B12-binding domain-containing protein
KO
K20450
2-methyleneglutarate mutase [EC:
5.4.99.4
]
Organism
acae
Alkalicella caledoniensis
Pathway
acae00760
Nicotinate and nicotinamide metabolism
acae01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
acae00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00760 Nicotinate and nicotinamide metabolism
HYG86_14515
Enzymes [BR:
acae01000
]
5. Isomerases
5.4 Intramolecular transferases
5.4.99 Transferring other groups
5.4.99.4 2-methyleneglutarate mutase
HYG86_14515
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Gene cluster
GFIT
Motif
Pfam:
B12-binding
Met_asp_mut_E
Methyltransf_31
Motif
Other DBs
NCBI-ProteinID:
QNO15895
UniProt:
A0A7G9WB33
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Position
2944418..2946277
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AA seq
619 aa
AA seq
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MAKYRPNTERIIREDIERIQAYEKAFGVKMPYIDENGDIQGLPAPYPREVNGVIRSGYRL
TELGRKAVETGNPIQNPILGRNSAEETFNESQHMYKMAEKLGINLFQFVHSEATRHIDPL
DGIELIEQSRGKGGITPEGERQFVEMGGGSTHPIRINATGDTTHLNVLNALIAGFDGTDL
GPVIHVHFGGRGIHDFKTKVTNGYKAIQLCAENNIFVQLDTHKHINNIMGTDGMALAMCL
LAEGLAVKAGLDRALSAIQMNVAGINLLADLALIKAYRETIWSEFIIAVPETFQNPPADL
IAEQAHFARMAASAKLAGANFYRPKAAENVGIPTGESMAKAIWATQDVFNNTYKVDIKDE
YIHKRKEEIKAEAMAVLTAALKRETMIKPEEVTAEFWLQYDSNDLIEMIVEAGKSGILDT
PRAGGWDLKRFVKTNRDFDGIRRYVKGFTPIGVDEKYMPLTKENIEVKGENVITKKEKIL
LATVGADAHVVGINMVKEAIEQAGYEVIFLRGMNLPETVAEVAAETKADVVGVSNLLGLG
VTLFPRVDSRLKELGIRDDVVLMSGGRIAEKEEEHAMFEEKIANEGTGFLGVDGFFGPGT
DVKECIKWIEEQLQDKRGE
NT seq
1860 nt
NT seq
+upstream
nt +downstream
nt
atggctaagtatagaccaaatacagaaagaatcatcagagaagacattgaaagaattcaa
gcatatgaaaaagcctttggcgtaaagatgccttacattgatgaaaatggtgatattcaa
ggtttaccagcaccatatccgagggaagttaatggtgttattcgaagtggttatcgttta
actgagcttggtagaaaagcagtggaaactggcaatccaatacaaaacccaattttgggt
aggaacagtgccgaagagaccttcaatgaatcacagcatatgtataaaatggctgaaaag
ctaggaataaacttgtttcaatttgttcactctgaagcaacaagacatatagacccatta
gacggtatcgaacttatcgagcaatcaaggggtaaaggtggtataactcctgaaggtgaa
agacagtttgtggaaatgggtggtggatctacacatccaattagaataaatgctactggt
gataccactcatcttaacgtacttaatgctctaatagcaggatttgatggaacagatcta
ggtcctgttatccacgttcactttggaggcagaggtattcatgactttaaaacaaaggta
accaatggatataaagctattcaattatgtgcggagaacaatatcttcgttcaacttgat
acccataaacatataaacaacataatgggaactgatggaatggcgctagcaatgtgttta
cttgctgagggattagctgtaaaagcaggattagacagggcccttagtgctatccagatg
aatgttgcaggaataaacctattagccgacttagccctaataaaagcttatcgtgagaca
atttggagtgagtttatcattgctgttccagagacattccaaaacccacctgcagattta
atagcggaacaagcacactttgctagaatggcagcatcggcaaaactggcgggagcgaac
ttctatagaccaaaggccgcagaaaatgttgggatacctactggtgagtccatggcgaaa
gctatttgggctacgcaagatgtattcaacaatacctataaggttgatataaaagatgaa
tatatccacaaaagaaaagaagaaattaaggcagaggccatggctgtattaacggctgcc
cttaagagagaaaccatgattaagcctgaagaagtaacagcagaattctggttacaatac
gactccaatgatttaatcgaaatgattgtagaagctggtaaaagtggcattttagataca
ccaagggcaggaggctgggatttaaaaagatttgtaaaaacaaatagagattttgatggt
atcagaaggtatgtcaaaggttttactccaataggtgtagatgaaaagtatatgccttta
acaaaagaaaacatagaagttaaaggggaaaatgttataacaaagaaggaaaaaatactc
ttagctactgttggagctgacgcccatgttgttggaattaacatggtcaaagaagcaata
gagcaagcagggtacgaagtgattttcctaaggggaatgaacttgccagaaactgtggca
gaggttgctgctgaaacaaaggcagatgttgtaggagtaagtaacttattgggtctgggt
gttactcttttcccaagggtagactcacgacttaaagagcttggcataagagacgatgtg
gtacttatgtcaggtggtagaatagctgaaaaagaagaagaacacgcgatgttcgaggaa
aaaatagctaatgagggaactgggttcttaggcgttgatggattctttggtcccggcact
gatgtaaaagaatgtataaaatggatagaagagcagttacaagataaaaggggtgaataa
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