Glutamicibacter nicotianae: QQS42_06150
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Entry
QQS42_06150 CDS
T09135
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
gnc
Glutamicibacter nicotianae
Pathway
gnc00020
Citrate cycle (TCA cycle)
gnc00630
Glyoxylate and dicarboxylate metabolism
gnc00785
Lipoic acid metabolism
gnc01100
Metabolic pathways
gnc01110
Biosynthesis of secondary metabolites
gnc01120
Microbial metabolism in diverse environments
gnc01200
Carbon metabolism
gnc01210
2-Oxocarboxylic acid metabolism
Module
gnc_M00009
Citrate cycle (TCA cycle, Krebs cycle)
gnc_M00011
Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate
Brite
KEGG Orthology (KO) [BR:
gnc00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
QQS42_06150
00630 Glyoxylate and dicarboxylate metabolism
QQS42_06150
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
QQS42_06150
Enzymes [BR:
gnc01000
]
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)
QQS42_06150
2. Transferases
2.2 Transferring aldehyde or ketonic groups
2.2.1 Transketolases and transaldolases
2.2.1.5 2-hydroxy-3-oxoadipate synthase
QQS42_06150
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.61 dihydrolipoyllysine-residue succinyltransferase
QQS42_06150
4. Lyases
4.1 Carbon-carbon lyases
4.1.1 Carboxy-lyases
4.1.1.71 2-oxoglutarate decarboxylase
QQS42_06150
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
E1_dh
2-oxoacid_dh
Transket_pyr
OxoGdeHyase_C
2-oxogl_dehyd_N
Motif
Other DBs
NCBI-ProteinID:
WIV45177
LinkDB
All DBs
Position
complement(1290216..1293971)
Genome browser
AA seq
1251 aa
AA seq
DB search
MPEQAHHRLTEEFGGNEWLVDELFEQYLVDKNSVDKKWWDIFESLAAEKKESAAPAAQPA
PAAAAAAAPAANGQGAPRAAAQARATEPAPAATAAPAPAAEAKKAEPAPKTAPIPAQAPK
ATPSTELYGEEKRTPLRGPMKAIATNMDASLTVPTATTVRAVPAKVMIDNRIVINNHLKR
ARGGKISFTHLIGFAVIRALKQIPSMNVTYDVIDKKPTAIQPAHVNFGIAIDMPKPDGTR
MLAVPNIKAAETLSFNEFWATYEDLIKRARGNKLTADDYAGTTVSLTNPGGIGTVHSVPR
LSKGQAAIIGVGALEYPAEYRGSSEKTVAALGIGKHITLTSTYDHRVIQGAGSGEFLKLV
ESLLLGEQGFYDEIFEQLRIPYEPVRWAVDNQVDIDLQVNKVARIQHLINSYRVRGHLMA
DTNPLEYVQRKHPDLDIKSYGLTLWDLDREWLAGGLGGKDRALLRDILGVLRDAYCRTIG
TEYMHLQNPEEREWFQAKLESGYAKPSREEQLRILSKLNSAEAFETFLQTKFVGQKRFSL
EGGESLIPLLDAIISDAADEQLNEVAIGMAHRGRLNVLTNIAGKTYAQVFREFEGTATPG
SVQGSGDVKYHLGTEGSYTSDAGNQTKIYLAANPSHLEAVDPVLEGITRAKLDRLEQKNT
VLPILVHGDAAFAGQGVVSEVLAMSQLPGYKTGGTVHVIVNNQIGFTTAPSSSRSSVYAT
DVARTVQAPIFHVNGDDPEAVVHVGQLAFEYRQKFGKDVVIDLVCYRRRGHNEGDDPSMT
QPIMYNLIEAKRSTRKLYTEALVGRGDITQEEAENVLAEYKENLERIFAETHAAQTSPIP
IITPGSTINDLEKPFAQAADENTVDGARGSAISEQTLAKIGAAHLDIPEGFTMHTKLKSL
LERREKMSREGGIDWGFAELAALGSLTMEGVPVRLAGQDSRRGTFVQRHAVFHDRENDNE
WYPLKGLSEDQAPLWIYDSLLSEYAALGFEYGYSVERPDALVMWEAQFGDFVNGAQTVID
EFISSAEQKWSQSSSLVMLLPHGYEGQGPDHSSARIERFLQLCAENNMVVAQPSTGANHF
HLLRRQAYARPRKPLIVFTPKQLLRLKAAASAVEDFTTGGFREVIGDASITDANAVDKVL
LCSGRVYYDLLAARTKANDTKTALVRVEQLYPAPAEQIAAELAKYPNAEVSWVQDEPANQ
GPWPFFGLYVVPQLDRKIKLVSRPASAATSAGTAKRHEAENAVLIQQAFAR
NT seq
3756 nt
NT seq
+upstream
nt +downstream
nt
gtgccagagcaagcacaccaccggctgaccgaagagtttggtggaaacgagtggctagta
gacgagctgttcgaacagtatctcgtcgacaagaactcggttgataagaaatggtgggat
attttcgaatctctcgccgccgaaaagaaggaatccgcagcaccggcagcgcagccggca
ccagcagcggcagccgcggcagcaccagctgccaacgggcagggcgcaccacgcgccgcc
gcccaggcccgtgccaccgaaccagcgccggctgccacggcagcaccagctccggccgct
gaagccaagaaggctgagccagctccgaagactgccccgatcccggcacaggccccgaag
gccacgccgtccaccgaactttacggcgaggagaagcgcaccccgctgcgcgggccgatg
aaggccatcgcaaccaacatggatgcctcgctcaccgttcctaccgccaccaccgtgcgt
gccgtgccggccaaggtgatgatcgacaaccgcattgtcatcaacaaccatctcaagcgc
gcccgcggcggcaagatctccttcacccacctgatcggcttcgccgtgatccgtgcgctg
aagcagatcccgtcgatgaacgtcacctacgacgtgatcgacaagaagccgaccgcgatc
cagccggctcacgtgaacttcggcatcgccatcgacatgccgaagccggatggcacccgc
atgctggccgtgccgaacatcaaggccgccgagaccctgagcttcaacgaattctgggcc
acctacgaagatttgatcaagcgcgcccgcggcaacaagctgaccgctgacgactacgca
ggcaccaccgtctcgctgaccaaccccggcggcatcggcaccgtgcactcggtgccccgc
ctgtccaagggccaggccgcgatcatcggcgtcggcgcactggaatacccggccgaatac
cgcggctcctcggagaagaccgtggctgccttgggcatcggcaagcacatcaccctgacc
tccacctacgaccaccgcgtcatccagggtgcaggttcgggcgagttcctgaagctggtc
gagtcgctgctgctgggcgagcagggcttctacgacgagatcttcgagcagctgcgcatc
ccttacgagccggtccgctgggccgtcgacaaccaggtcgacatcgacctgcaggtcaac
aaggtcgcccgcatccagcacctgatcaactcctaccgcgtgcgcggccacctgatggcc
gacaccaacccgctggaatacgtccagcgcaagcacccggacctggacatcaagtcctac
ggcctgaccctgtgggatctggatcgcgaatggctggccggcggcctgggcggcaaggac
cgcgcgctgctgcgcgacatcctgggcgtgctgcgcgatgcctactgccgcaccatcggc
accgagtacatgcacctgcagaacccggaagagcgcgaatggttccaggcgaagctggaa
tccggctacgccaagccaagccgcgaagagcagctgcgcatcctgagcaagctgaactcc
gccgaggccttcgagaccttcctgcagaccaagttcgtcggccagaagcgcttctcgctg
gaaggcggcgaatcgctgattccgctgctggatgcgatcatctccgacgcagccgatgag
cagctcaacgaggttgcgatcggcatggcccatcgcggccgcctgaacgtgctgaccaac
atcgctggcaagacctacgcacaggtcttccgcgaattcgaaggcaccgccaccccgggc
tcggtccagggctcaggcgatgtgaagtaccacctgggcaccgagggctcgtacacctcg
gacgccggcaaccagaccaagatctacctggctgccaacccatcgcacctggaagcggtc
gatccggtgctcgagggcattacccgcgccaagctggaccggctggagcagaagaacacc
gtgctgccgatcctggtccacggcgacgccgccttcgcaggccagggcgtggtttccgag
gtgctggcaatgagccagctgccgggctacaagaccggcggcaccgtgcacgtgatcgtg
aacaaccagatcggcttcaccaccgcgccgagctcctcgcgctcctcggtctacgccacc
gacgtggcccgcaccgtgcaggctccgatcttccacgtcaacggggatgacccggaggca
gtggtgcacgtgggccagctggccttcgagtaccgccagaagttcggcaaggacgtcgtc
atcgacctggtgtgctaccgccgccgcggccacaacgagggcgacgacccgtcgatgacc
cagccgatcatgtacaacctgatcgaagccaagcgctcaacccgcaagctgtacaccgag
gccctggtcggccgcggcgacatcacgcaggaagaagccgagaacgtgctggccgagtac
aaggagaacctggagcgcatcttcgccgagacgcatgccgcccagacctccccgatcccg
atcatcaccccgggctcgaccatcaacgacctggagaagccattcgcgcaggccgccgac
gagaacaccgtcgacggcgcccgcggctcggccatctccgagcagaccctggccaagatc
ggtgccgcccacctggacatcccagaaggcttcaccatgcacaccaagctgaagtcgctg
ctggaacgccgcgagaagatgtcccgcgaaggcggcatcgactggggcttcgccgagctg
gcagccctgggcagcctgaccatggaaggcgtgccggtccgcctggcaggccaggactcg
cgccgcggcaccttcgtgcagcgccacgcagtcttccacgaccgcgagaacgacaacgag
tggtacccgctgaagggcctgtccgaggaccaggctccgctgtggatctacgactcgctg
ctctccgaatacgccgccctcggcttcgagtacggctactcggttgagcgcccggacgcg
ctggtcatgtgggaagcccagttcggcgacttcgtcaacggcgcgcagaccgtgatcgac
gagttcatctcctccgccgagcagaagtggtcgcagtcctcctcgctggtcatgctgctg
ccgcacggctacgaaggccagggcccggaccactcctcggcccgcatcgagcgcttcctg
cagctgtgcgcggagaacaacatggtcgtggcccagccgtccaccggtgccaaccacttc
cacctgctgcgccgccaggcctacgcccgtccgcgcaagccgctgatcgtcttcaccccg
aagcagctgcttcgcctgaaggcagccgccagcgccgtggaggacttcaccaccggcggc
ttccgcgaggtcatcggcgatgcgtcgatcaccgatgcgaacgccgtggacaaggtgctg
ctgtgctcgggccgcgtgtactacgacctgctggcagcccgcaccaaggcgaacgacacc
aagaccgcactggtgcgcgtcgagcagctctacccggctccggccgagcagatcgccgcc
gagctggccaagtacccgaacgccgaggtttcgtgggtccaggacgagcctgcgaaccag
ggcccatggccgttcttcggcctctacgtggtgccgcagctggatcgcaagatcaagctc
gtttcgcgcccggcatcggctgccacctcggccggtaccgccaagcgccacgaagcagaa
aacgcagtgctgatccagcaggctttcgcccgctaa
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