Actinomadura welshii: ACN3XK_47570
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Entry
ACN3XK_47570 CDS
T10979
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
aws Actinomadura welshii
Pathway
aws00020
Citrate cycle (TCA cycle)
aws00630
Glyoxylate and dicarboxylate metabolism
aws00785
Lipoic acid metabolism
aws01100
Metabolic pathways
aws01110
Biosynthesis of secondary metabolites
aws01120
Microbial metabolism in diverse environments
aws01200
Carbon metabolism
aws01210
2-Oxocarboxylic acid metabolism
Module
aws_M00009
Citrate cycle (TCA cycle, Krebs cycle)
aws_M00011
Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate
Brite
KEGG Orthology (KO) [BR:
aws00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
ACN3XK_47570
00630 Glyoxylate and dicarboxylate metabolism
ACN3XK_47570
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
ACN3XK_47570
Enzymes [BR:
aws01000
]
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)
ACN3XK_47570
2. Transferases
2.2 Transferring aldehyde or ketonic groups
2.2.1 Transketolases and transaldolases
2.2.1.5 2-hydroxy-3-oxoadipate synthase
ACN3XK_47570
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.61 dihydrolipoyllysine-residue succinyltransferase
ACN3XK_47570
4. Lyases
4.1 Carbon-carbon lyases
4.1.1 Carboxy-lyases
4.1.1.71 2-oxoglutarate decarboxylase
ACN3XK_47570
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
E1_dh
2-oxoacid_dh
Transket_pyr
OxoGdeHyase_C
2-oxogl_dehyd_N
Motif
Other DBs
NCBI-ProteinID:
XRQ04193
LinkDB
All DBs
Position
10363191..10366880
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AA seq
1229 aa
AA seq
DB search
MTDFGANEWLVDELYQKYLEDPNSVDEAWWNFFADYQPDNRPGAATPASPGAPQAPTESA
APRAGNGTAAAPPTPVQPVEPPKAPPKRAAKPAPKADRKPAPPPVPEGAEEIRLRGAAAR
TATNMEASLAVPTATSVRTVPAKLLIDNRIVINNHLKRGRGGKVSFTHLIGYAIVKALAA
MPEMNTAYTEVDGKPVQIQPEHVNFGLAIDLQKSDGTRQLVVPSIKAAETLDFRQFWAAY
EEIVRKARGNKLTIEDFQGTTISLTNPGTIGTVHSVPRLMQGQGTIIGVGSMEYPAEFAG
ASGETLSRMGISKTMTLTSTYDHRIIQGAQSGDFLRRIHELLLGADGFYDEIFEALRIPY
EPVRWVKDISATHEDDVAKVARVHELIHAYRVRGHLMADTDPLEYKQRRHPDLDILKHGL
TLWDLEREFATGGFGGKPTMKLRDILGVLRMAYCRTVGIEYMHMQDPEERAWIQERVEVP
HDKPSREEQLHVLRRLNSAEAFETFLQTKFVGQKRFSLEGGESVIPLLDSVISAAAKASL
DEVVVGMAHRGRLNVLANIVGKSYGQIFGEFEGNLDPRSAQGSGDVKYHLGASGDFVADD
GSKIHCELVANPSHLETVDPVLEGVVRAKQDVLDVGEAGFSVLPVLIHGDAAFAGQGVVA
ETLNLSQLRGYRTGGTVHVVINNQVGFTTAPEYSRSSVYSTDVARMIQAPIFHVNGDDPE
ACARVARLAFEYRQTFKKDVVIDMVCYRRRGHNEGENPSFTQPLMYDLIDAKRSVRKLYT
EALIGRGDITVEEAEQALRDYQEQLERAFTETREAVKRPQEPGSVVKPDEEERIPIDHGK
AGTAVPQETVKRIIETQVSLPEGFTPHPRLQPILQRRAQMIEDDAIDWATGELLAMGSLL
IDGHPVRLVGQDTRRGTFGQRHAVLVDRKTGEEYTPLKQFGQGVSKFYVHDSLLSEYAAM
GFEYGYSMTRPDALVCWEAQFGDFANGAQNIVDEYISSGEQKWGQHSSVVLLLPHGYEGQ
GPDHSSARIERYLQLCAQDNMTVVYPTTPANYFHLLRWQVLSARHKPLVVFTPKSLLRLK
AATSRVAEITGGAFLPVIPDTDPAIDPAGVRRVLLTTGKIYYDVVKARESAGATDTAVVR
VERLYPPPVDEIKAELAKYPADVEVVWVQDEPANMGAWPFMALKLPHHIEGLRMSRISRP
ASSSPAVGSAKLHQAEQEALLARIFGEQK
NT seq
3690 nt
NT seq
+upstream
nt +downstream
nt
atgactgacttcggtgccaacgagtggctggtcgacgagctgtaccagaagtacctcgaa
gaccccaactcggttgatgaggcctggtggaacttcttcgcggactaccagccggacaac
cggccgggcgccgcgacccccgcgtcccccggggcgccccaagcccccaccgagagcgcg
gccccgcgggccggcaacggcactgcggccgctccgccgacacctgtgcagccggtcgag
cccccgaaggccccgccgaagcgtgccgccaagcccgccccgaaggcggaccggaagccg
gcgcctccccccgtgcccgagggcgccgaggagatccggctgcgcggcgccgccgcccgg
acggccaccaacatggaggccagcctcgcggtgccgaccgcgacgagcgtgcgcaccgtg
ccggcgaagctgctgatcgacaaccgcatcgtcatcaacaaccacctgaagcgcgggcgc
ggcggcaaggtctcgttcacccacctgatcgggtacgcgatcgtcaaggcgctcgccgcc
atgccggagatgaacaccgcgtacaccgaggtggacggcaagccggtgcagatccagccg
gagcacgtcaacttcgggctggcgatcgacctgcagaagagcgacgggacgcggcagctc
gtggtgccgagcatcaaggccgccgagacgctggacttccgccaattctgggccgcctac
gaggagatcgtccgcaaggcccgcggcaacaagctgaccattgaggacttccagggcacc
acgatcagcctgacgaacccgggcacgatcgggaccgtccactccgtgccgcggctgatg
cagggccaggggacgatcatcggcgtggggtcgatggagtacccggcggagttcgcgggc
gcgtcgggcgagacgctgtcgcgcatggggatcagcaagacgatgacgctgacctccacc
tacgaccaccgcatcatccagggcgcgcagtccggcgacttcctgcgccgcatccacgag
ctgctcctcggcgccgacggcttctacgacgagatcttcgaggcgctgcgcatcccgtac
gagccggtgcgctgggtgaaggacatctccgcgacgcacgaggacgacgtcgccaaggtc
gcccgcgtccacgagctgatccacgcctaccgggtccgcggccacctgatggccgacacc
gacccgctggagtacaagcagcggcggcaccccgacctcgacatcctcaagcacggcctc
accctgtgggacctggagcgcgagttcgcgaccggcgggttcggcggcaagccgacgatg
aagctgcgcgacatcctcggcgtcctgcgcatggcctactgccggacggtcggcatcgag
tacatgcacatgcaggacccggaggagcgggcctggatccaggagcgcgtggaggtcccg
cacgacaagccgtcgcgcgaggagcagctgcacgtgctgcgccggctgaacagcgccgag
gcgttcgagacgttcctgcagacgaagttcgtcgggcagaagcggttctcgctggagggc
ggcgagtccgtcatcccgctgctcgactcggtgatctccgctgcggcgaaggccagcctg
gacgaggtcgtcgtcggcatggcgcaccgcggccggctgaacgtcctcgcgaacatcgtc
gggaagtcctacgggcagatcttcggcgagttcgagggcaacctcgacccgcgcagcgcg
cagggctcgggcgacgtgaagtaccacctcggcgcgtccggcgacttcgtcgccgacgac
ggctccaagatccactgtgagctggtggcgaacccgtcgcacctggagacggtcgacccg
gtgctggagggcgtcgtccgcgccaagcaggacgtcctggacgtcggcgaggccggcttc
agcgtgctgcccgtgctgatccacggcgacgccgcgttcgccgggcagggcgtggtggcc
gagacgctgaacctgtcgcagctgcgcggctaccgcaccggcggcaccgtccacgtcgtg
atcaacaaccaggtgggcttcaccaccgcgcccgagtactcgcgctccagcgtgtactcc
acggacgtggcccggatgatccaggcgcccatcttccacgtcaacggcgacgacccggag
gcgtgcgcgcgggtcgcgcggctcgcgttcgagtaccggcagacgttcaagaaggacgtc
gtcatcgacatggtctgctaccggcgccggggccacaacgagggcgagaacccctcgttc
acccagccgctgatgtacgacctgatcgacgcgaagcgctcggtgcgcaagctgtacacc
gaggcgctgatcggccgcggcgacatcaccgtcgaggaggccgagcaggcgctgcgcgac
taccaggagcagctggagcgggccttcaccgagacccgcgaggcggtgaagcggccgcag
gagccgggctcggtcgtcaagcccgacgaagaggaacgcatcccgatcgaccacggcaag
gccggcacggcggtcccgcaggagaccgtcaagcggatcatcgagacgcaggtcagcctg
ccggagggcttcaccccgcacccgcggctgcagccgatcctgcagcgccgcgcgcagatg
atcgaggacgacgcgatcgactgggcgaccggcgagctgctcgcgatggggtcgctgctg
atcgacggccacccggtgcggctcgtggggcaggacacccggcgcgggacgttcgggcag
cggcacgcggtgctcgtcgaccgcaagaccggcgaggagtacacgccgctgaagcagttc
gggcagggcgtgtcgaagttctacgtgcacgactcgctgctcagcgagtacgcggcgatg
ggcttcgagtacggctactcgatgacccgcccggacgcgctggtgtgctgggaggcccag
ttcggcgacttcgccaacggcgcccagaacatcgtggacgagtacatctcgtccggcgag
cagaagtggggccagcactccagcgtcgtgctgctgctgccgcacggctacgagggccag
gggccggaccactcctcggcgcgcatcgagcgctacctgcagctgtgcgcgcaggacaac
atgaccgtggtgtacccgacgaccccggcgaactacttccacctgctgcgctggcaggtg
ctgtcggcccggcacaagccgctggtcgtgttcacgccgaagtcgctgctgcggctgaag
gcggcgacgtcccgggtcgcggagatcaccggcggcgcgttcctgccggtgatcccggac
accgacccggcgatcgacccggcgggcgtgcggcgggtgctgctcaccaccggcaagatc
tactacgacgtcgtgaaggcgcgggagagcgcgggcgcgaccgacaccgcggtcgtccgg
gtcgagcggctgtacccgccgccggtggacgagatcaaggcggagctggccaagtacccg
gcggacgtcgaggtcgtgtgggtgcaggacgagccagcgaacatgggcgcctggccgttc
atggcgctgaagctgccgcaccacatcgaggggctgcggatgtcgcggatctcgcgtccg
gcgtcctcgtcccccgccgtgggttcggcgaagctgcaccaagcggagcaggaggccctg
ctcgcccggatcttcggcgagcagaagtag
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