Aquiluna borgnonia: HRU87_02095
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Entry
HRU87_02095 CDS
T06624
Name
(GenBank) multifunctional oxoglutarate decarboxylase/oxoglutarate dehydrogenase thiamine pyrophosphate-binding subunit/dihydrolipoyllysine-residue succinyltransferase subunit
KO
K01616
multifunctional 2-oxoglutarate metabolism enzyme [EC:
2.2.1.5
4.1.1.71
1.2.4.2
2.3.1.61
]
Organism
aqg
Aquiluna borgnonia
Pathway
aqg00020
Citrate cycle (TCA cycle)
aqg00630
Glyoxylate and dicarboxylate metabolism
aqg00785
Lipoic acid metabolism
aqg01100
Metabolic pathways
aqg01110
Biosynthesis of secondary metabolites
aqg01120
Microbial metabolism in diverse environments
aqg01200
Carbon metabolism
aqg01210
2-Oxocarboxylic acid metabolism
Module
aqg_M00009
Citrate cycle (TCA cycle, Krebs cycle)
aqg_M00011
Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate
Brite
KEGG Orthology (KO) [BR:
aqg00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
HRU87_02095
00630 Glyoxylate and dicarboxylate metabolism
HRU87_02095
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
HRU87_02095
Enzymes [BR:
aqg01000
]
1. Oxidoreductases
1.2 Acting on the aldehyde or oxo group of donors
1.2.4 With a disulfide as acceptor
1.2.4.2 oxoglutarate dehydrogenase (succinyl-transferring)
HRU87_02095
2. Transferases
2.2 Transferring aldehyde or ketonic groups
2.2.1 Transketolases and transaldolases
2.2.1.5 2-hydroxy-3-oxoadipate synthase
HRU87_02095
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.61 dihydrolipoyllysine-residue succinyltransferase
HRU87_02095
4. Lyases
4.1 Carbon-carbon lyases
4.1.1 Carboxy-lyases
4.1.1.71 2-oxoglutarate decarboxylase
HRU87_02095
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GFIT
Motif
Pfam:
E1_dh
2-oxoacid_dh
Transket_pyr
OxoGdeHyase_C
2-oxogl_dehyd_N
KYNU_C
Motif
Other DBs
NCBI-ProteinID:
QKJ25016
UniProt:
A0A7D4U7E9
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Position
complement(388661..392401)
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AA seq
1246 aa
AA seq
DB search
MSSVDNHNSESDFGANEWLVAEMYGQWLTNPDAVDKSWWPILERYALTQQPQVVPAPVFD
SGEPTTGSLKIINTDSTVVQSFDASAPAPVTEAITIPVAKTSSLAPSNAPVPADLPAATG
SMPVVGAEDEEQPEVNILRGMAKTLASNMDASLSIPTATSVRQVPAKLLIDNRIVINSHL
KRTRGGKVSFTHLIGYAVVQALKEFPSQNVFYDEVDGKPAAVTPANINFGLAIDIPKPDG
TRALLVPNIKRAQKLNFAEFVSAYETLVRKARDNKLTAEDFAGTTISLTNPGGIGTVHSV
PRLTRGQGCIVGVGALDYPAQFQGMAEEMLAEQGIGKILTLTSTYDHRVIQGAGSGEFLK
IINELLLGERGFYDKIFADMRIPYSPVVWVNDFHWDLSDQSGKNTRIQEYINAFRVRGHL
IADVDPLEYQQRWHPDLDIRSYGLSLWDLDRTFKTGGFGGRTKAKFRNMLGILRDSYCRT
VGVEYMHIQNPAEREWFQEKLERPYQKPTKEEQFRILNKLNEAEAFETFLQTKFVGQKRF
SLEGGESLIPSLDEILQNAAHAGMDEVAIAMAHRGRLNVLTNVAGKTYGQVFREFEGSTD
TKSVQGSGDVKYHLGTEGVFTCTDGSTVKVSLAANPSHLEAVNPVLEGIVRAKQDRLGNP
ENFPVLPILIHGDAAFIGQGVVPETMQMSGLEGYNVGGTVHIVVNNQVGFTTLPKDSRTS
VYSTDVAKAIQAPIFHVNGDDPEAVVRVSRLAFEYRQEFKKDVVIDIVCYRRRGHNEGDD
PSMTQPLMYNLIEHKRSVRTLYLENLVGRGDISQEEFDAANAAFQANLEKAFIDVHEAMS
QPVALPERPVGIGTTASEKQQVARPTAIARELVEAIGNAHANQPEGFNVHPKLAQLLQKR
VEMSREGGIDWGFGELLAFGSLLVEGVNVRLAGQDARRGTFVQRHASFHDRLTGQEWMPL
QFISEQQAQFRVYNSLLSEYAALGFEYGYSVELPDSLTLWEAQFGDFVNGAQTILDEFIS
SAEQKWNQFSSVVLLLPHGYEGQGPDHSSARIERFLQLCAENNMTVAQPSTPASHFHLLR
RQAFSTPKRPLVVFAPKSMLRLKAASSAVEDFTTGSFRPLINDEQNLDPNKVQKVLFCSG
KIYWDLLAESQKRGDGTTAIVRVEQLYPTPVEEMKAAISQFPNAQLRWVQDEPLNQGPWT
YMGLFMPKYGINFTPVARPASASPASGSAKRHAAEQADLIQRAFQG
NT seq
3741 nt
NT seq
+upstream
nt +downstream
nt
ttgtcgtcagtcgacaatcacaattccgaatcggattttggcgctaacgagtggctcgtt
gccgagatgtatgggcagtggctcaccaaccccgacgcagttgacaaatcttggtggcca
atcctcgagcgctatgcgcttactcagcagccccaggttgtgccagccccggttttcgac
tccggcgaaccaacgaccggctcactaaaaatcatcaacaccgactccaccgtggtgcag
agttttgacgcctccgcaccggccccggtcaccgaggcaattaccattccggtcgccaag
acttcctccctagcgccttcaaacgctccggttcccgctgacttgccagctgccacaggt
tcaatgccggtagttggtgccgaggatgaggagcagcccgaggtcaacattctccgaggc
atggccaagactcttgcgtcaaacatggacgcgtcactctctatccccaccgctaccagc
gtgcgacaagtgccagccaagttgctgattgataaccgcatcgttattaactctcacctc
aaacgcaccagaggtggaaaagtttctttcacccacctgattggctatgcggtggtgcag
gccctcaaagagttccccagccaaaatgttttttacgacgaggtcgacggcaagcccgca
gctgttactccagccaacatcaatttcggactagcgattgacattccaaagcctgacggc
acccgggcgctgcttgttccaaacatcaagcgcgcccagaagctgaacttcgcagagttt
gtctccgcctacgagaccctggttagaaaggctagagacaataagctgaccgccgaggat
tttgccggcaccacaatttcgctaaccaacccaggcggcatcggaacagttcactcggtt
ccaaggctgacccgaggtcagggctgcatcgtcggtgtcggtgcgctggattacccagcg
cagttccagggcatggccgaggaaatgcttgccgagcagggcattggcaagattctcacc
ctcacctccacctacgaccaccgcgtgattcagggtgccggaagcggcgagttcttgaag
atcatcaacgagctactgcttggtgagcgcggtttctacgacaagatctttgcggacatg
aggattccctactccccagtggtttgggtcaacgatttccactgggacctctcggaccaa
agtggcaagaacacccgaattcaggagtacatcaacgccttccgcgttcgcggtcacctg
attgcagatgtggacccactggagtaccagcagcgctggcacccagacctggatattcgc
tcctacggtctaagcctttgggatctagaccgaacctttaagaccggtggcttcggcggt
cgcaccaaggccaagttccgcaacatgcttggaatcctcagggatagctactgccgcacc
gtgggtgtggagtacatgcacatccagaacccagccgagcgcgagtggttccaggaaaaa
cttgagcgcccctaccaaaagcccaccaaggaagagcagttcagaattctgaacaagctg
aacgaggcggaggcttttgagaccttcctgcagaccaagtttgttgggcagaagcgcttc
tccctcgaaggtggcgagtcactgattccatcgctcgatgagattctgcagaatgcagct
catgctggcatggatgaggttgccatcgccatggcccaccgcggtcgcctgaacgtacta
accaacgttgccggtaagacctacggccaggtattccgggaatttgaagggtccaccgac
accaagagtgttcagggttcgggagacgtgaagtatcaccttggaaccgaaggggtcttc
acctgcaccgatggctcaaccgttaaggtttccctggctgctaacccttcacacctcgag
gcggtaaacccggttctcgaggggattgtccgggccaagcaggaccgactcggaaaccca
gagaacttcccggtactgccgatcctgatccacggcgatgccgcgttcatcggtcagggc
gtggttccagaaaccatgcagatgagtggcctagagggctacaacgttggcggaaccgtc
cacatcgtggtgaacaaccaggtgggctttaccaccctgcccaaggactccagaacttcg
gtttactcaaccgatgtggccaaggcgattcaggcaccgatcttccacgtcaacggcgat
gaccctgaggcggtagtgagagtctcccgactggccttcgagtaccgtcaggaattcaag
aaggacgtagtcatcgacatcgtctgctaccgcagacgcggtcacaacgagggcgatgac
ccttcgatgactcagccgctgatgtacaacctgattgagcacaagcgcagtgtccgcacc
ctgtacctggagaacctggtgggtcgcggagacatcagccaggaagaatttgacgctgct
aacgcagccttccaggccaacctggaaaaggcgttcattgatgttcacgaggccatgagc
cagccagtcgctctgccagagcgcccagttggcatcggtaccacagctagcgagaagcag
caggttgcccgcccaaccgcaattgccagggaactggttgaggcaatcggaaatgctcac
gccaaccagccagagggcttcaatgttcaccccaagctcgctcaactccttcaaaagcgc
gttgaaatgagccgtgagggtggcatcgactggggctttggcgagctgcttgccttcggg
tcactattggttgagggcgtaaacgttcgccttgccggacaggacgctagacgaggcaca
ttcgtgcagcgtcacgcaagcttccacgatcgactcaccggccaggagtggatgccgctg
cagttcattagcgagcagcaggcccagttcagggtctacaactcacttttgagcgagtat
gcagccttgggctttgagtacggctactcagttgagctgccagattcgctaaccctctgg
gaagctcagttcggtgacttcgtaaacggcgctcagaccattttggacgagtttatttcc
tctgccgagcagaagtggaaccagttctcctcggttgtcctgctgctgcctcacggctac
gaaggccagggcccggaccactcctctgcgagaatcgaacggttcctgcagctgtgtgct
gagaacaacatgaccgttgctcagccctccacgccagcctcccacttccacctgctgcgc
aggcaggcattctccacacccaagcgcccactggtggtgttcgcacctaagtcgatgctc
cgcctaaaggcagcctcctctgcggttgaggacttcaccaccggaagctttaggccgctg
atcaacgacgagcagaaccttgacccgaataaggttcagaaggtgctgttctgctcgggc
aagatctactgggatctgttggccgagagccaaaagcgcggcgatggcacaactgccatc
gtccgggtcgagcagctctacccaactccggttgaagagatgaaggcagccatttctcag
ttcccgaacgcccagctgcgctgggttcaggatgagccactgaaccaggggccctggacc
tacatgggtctgttcatgccgaaatacggcatcaacttcacccccgttgcaaggccggcg
tccgcatcgccagcatccggttcggctaagcgtcacgcagctgagcaagcggacttgatc
cagcgagcatttcagggctga
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