KEGG   Microbacterium testaceum: MTES_0505
Entry
MTES_0505         CDS       T01423                                 
Symbol
kgd
Name
(GenBank) 2-oxoglutarate dehydrogenase complex, dehydrogenase (E1) component
  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
mts  Microbacterium testaceum
Pathway
mts00020  Citrate cycle (TCA cycle)
mts00630  Glyoxylate and dicarboxylate metabolism
mts00785  Lipoic acid metabolism
mts01100  Metabolic pathways
mts01110  Biosynthesis of secondary metabolites
mts01120  Microbial metabolism in diverse environments
mts01200  Carbon metabolism
mts01210  2-Oxocarboxylic acid metabolism
Module
mts_M00009  Citrate cycle (TCA cycle, Krebs cycle)
mts_M00011  Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate
Brite
KEGG Orthology (KO) [BR:mts00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    MTES_0505 (kgd)
   00630 Glyoxylate and dicarboxylate metabolism
    MTES_0505 (kgd)
  09108 Metabolism of cofactors and vitamins
   00785 Lipoic acid metabolism
    MTES_0505 (kgd)
Enzymes [BR:mts01000]
 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)
     MTES_0505 (kgd)
 2. Transferases
  2.2  Transferring aldehyde or ketonic groups
   2.2.1  Transketolases and transaldolases
    2.2.1.5  2-hydroxy-3-oxoadipate synthase
     MTES_0505 (kgd)
  2.3  Acyltransferases
   2.3.1  Transferring groups other than aminoacyl groups
    2.3.1.61  dihydrolipoyllysine-residue succinyltransferase
     MTES_0505 (kgd)
 4. Lyases
  4.1  Carbon-carbon lyases
   4.1.1  Carboxy-lyases
    4.1.1.71  2-oxoglutarate decarboxylase
     MTES_0505 (kgd)
SSDB
Motif
Pfam: 2-oxoacid_dh E1_dh Transket_pyr OxoGdeHyase_C 2-oxogl_dehyd_N SHOCT
Other DBs
NCBI-ProteinID: BAJ73469
UniProt: E8NBK9
LinkDB
Position
524444..528121
AA seq 1225 aa
MSSQVTGVGTSNEGEFGANEWLVDELYEQFKVDKHSVDKAWWPILEAYHPVVDESAAAGS
PPSAPAAEPKPVTAPIPVVGQTPVARTTTKPAKPQPIPAQAPTAAPSAGSESTEEDRVTV
LKGMPKALASNMDDSLTVPTATSVRTIPAKLMIDNRIVINNHMSRTRGGKVSFTHLIGWA
LIQALKEFPSQNVYYAEIDGKPSVVAPAHINLGIAIDMPKPDGSRALLVPSIKRADTLTF
GEFLASYEDLVRRARNNKLTPADFQGTTISLTNPGGIGTVHSVPRLMRGQGAIIGAGALD
YPAEFQGSSAKTLNELAIGKTITLTSTYDHRVIQGAGSGEFLKKVHELLIGQRGFYDDIF
AALRIPYAPIHWAADINVDVSERIDKSARVQELINSYRVRGHLMADIDPLEYVQRTHPDL
EIESHGLTFWDLDREFVTGGLGDRRVAKLRDILGVLRDSYCRTIGVEYMHIQDPIQRKWF
QSNVEVKYIKPGHDEQLRILSKLNQAEAFETFLQTKYVGQKRFSLEGGESLIPLLDQILQ
GAASKGLDGAAIGMAHRGRLNVLTNIGGKTYGQVFREFEGAVAIGSKRGSGDVKYHLGTE
GTFVGDNGEELPVYLAANPSHLETVDGVLEGIVRAKQDRKPIGSFSWLPILVHGDAAFAG
QGVVVETLQMSQLRGYRTGGTIHVVVNNQVGFTTTPTDARTSVYATDVAKTIQAPVLHVN
GDDPEAVVRAAELAFLYREEFHRDVVIDLVCYRRRGHNEGDDPSMTQPLMTNLIEAKRSV
RRLYTEALVGRGDITEDEYEQAKQDFQNRLEVAFADTHEAETGTNPVVSTEAADEVPTGA
PETTGVSREVVHHIGDAFVNKPDGFTVHNKLQQLLEKRFDMSRNGGIDWAFGELLAFGSV
LMEGTPVRLAGQDSRRGTFVQRHSVLHDRKNGQEWLPLANLSENQGRFWVYDSLLSEYAA
MAFEYGYSVERSDALVLWEAQFGDFANGAQSVIDEFISSADQKWAQQSSVVLLLPHGYEG
QGPDHSSARIERYLQMCAQDNMIVARPSTPASYFHLLRRQAYQRPRRPLIVFTPKAMLRL
RGATSPVEDFLEGRFEPVLDDDRGLDAGAVTRVLLHAGKIHWDLRAELDKNPNPEIALVR
LEQYYPAPIDELNRVLATYPNAELVWVQDEPENQGAWPFIALEVDDKLGRPIRVISRAAA
ASTATGSPKVHANEHAEIMKAALAR
NT seq 3678 nt   +upstreamnt  +downstreamnt
gtgtcgagccaggtgacgggcgtcggtacttcgaacgagggcgagttcggcgcgaacgag
tggctcgtagacgaactctacgaacagttcaaagtcgacaagcactccgtggacaaggcc
tggtggccgattctggaggcgtaccacccggtcgtcgacgaatccgccgcggccggcagt
cccccgtccgctcccgcggccgagccgaagcccgtgacagcccccattcccgtcgtcggt
cagacacccgtggcccgcaccacgacgaagcccgccaagccgcagccgattccggcgcag
gctcccacggctgctccctcggccggttcggagagcaccgaggaagaccgcgtgacggtc
ctgaaggggatgccgaaggccctggcatccaatatggacgactcgctgacggtccccacc
gcgacgagcgtgcgcaccatccccgcgaagctgatgatcgacaaccgcatcgtcatcaac
aaccacatgtcgcgcacccgcggcggcaaggtgagcttcacgcacctcatcgggtgggcg
ctgatccaggcgctcaaggagttcccgagccagaacgtctactacgccgagatcgacggc
aagccctcggtcgtggctcccgcgcacatcaacctgggcatcgcgatcgacatgcccaag
cccgacggctcccgcgcgttgctggtgcccagcatcaagcgcgccgacacgctgacgttc
ggcgagttcctcgcctcctacgaagacctcgtgcgtcgcgcccgcaacaacaagctgacg
ccggccgacttccagggcacgacgatctcgctgaccaaccccggcggcatcggcaccgtc
cactcggtcccccgcctcatgcgcggtcagggagcgatcatcggcgccggcgcgctcgac
taccccgccgagttccagggctccagcgcgaagacgctcaacgagctcgcgatcggcaag
acgatcaccctgaccagcacgtatgaccaccgcgtcatccagggtgccggctcgggcgag
ttcctcaagaaggtgcacgagctgctcatcgggcagcgcggcttctacgacgacatcttc
gcggcgctgcgcatcccgtacgcgccgatccactgggccgccgacatcaacgtcgacgtc
tcggagcgcatcgacaagagcgcgcgcgtccaggaactgatcaactcgtaccgcgtgcgc
ggccacctcatggccgacatcgacccgctcgagtacgtgcagcgcacgcaccccgacctc
gagatcgagtcgcacgggctgacgttctgggacctcgaccgcgagttcgtcacgggcggt
ctgggcgatcggcgcgtcgccaagctgcgcgacatcctcggcgtcctgcgcgactcgtac
tgccgcaccatcggcgtcgagtacatgcacatccaggatccgatccagcgcaagtggttc
cagagcaacgtcgaggtcaagtacatcaagcccggccacgacgagcagctccgcatcctg
tcgaagctgaaccaggccgaggcgttcgagacgttcctgcagaccaagtacgtcggccag
aagcgtttcagcctcgagggcggcgagtcgctcatcccgctgctcgaccagatcctgcag
ggtgcggcctccaagggcctcgacggcgccgcgatcggcatggcccaccgcggtcgcctc
aacgtgctgaccaacatcggcggcaagacctacggccaggtgttccgcgagttcgagggc
gctgtcgcgatcggcagcaagcgcggctcgggcgacgtgaagtaccacctcggcaccgag
ggcaccttcgtcggcgacaacggtgaagagctccccgtctacctcgcggccaacccctcg
cacctcgagaccgtcgacggcgtgctcgagggcatcgtgcgggccaagcaggaccgcaag
cccatcggcagcttctcgtggctgcccatcctcgtgcacggcgacgccgcgttcgcgggt
cagggcgtcgtggtcgagacgctgcagatgtcgcagctgcgcggctaccgcaccggtggc
acgatccacgtcgtggtgaacaaccaggtcggcttcaccaccacgcccacggacgctcgg
acctcggtgtacgccaccgatgtcgccaagacgatccaggcgcccgtgctccacgtgaac
ggcgacgacccggaggccgtcgtccgcgcggcggagctggcgttcctgtaccgcgaggag
ttccaccgcgacgtcgtgatcgatctcgtctgctaccgccgccgcggtcacaacgagggc
gacgacccctcgatgacgcagccgctgatgacgaacctcatcgaggcgaagcgctccgtc
cggcgcctgtacaccgaggccctcgtcggccgcggcgacatcaccgaagacgagtacgag
caggcgaaacaggacttccagaaccgtctcgaggtcgccttcgccgacacgcacgaggcc
gagacgggcaccaacccggtcgtctcgaccgaggcggccgacgaggttccgacgggtgcg
cccgagacgaccggtgtctcccgcgaggtcgtgcaccacatcggtgacgccttcgtgaac
aagcccgacggcttcaccgtgcacaacaagctccagcagctgctcgagaagcgtttcgac
atgagccgcaacggcggcatcgactgggcgttcggcgagctgctcgccttcgggtctgtc
ctcatggagggcacgcccgtccgtctcgcgggtcaggactcgcgccgcggcacgttcgtg
cagcgccactccgtgctgcacgaccgcaagaacggccaggagtggctgccgctcgcgaac
ctcagcgagaaccagggccgcttctgggtctacgactcgctgctgagcgagtacgccgcg
atggcattcgagtacggctactcggtcgagcgctccgacgcgctcgtgctgtgggaagcg
cagttcggcgacttcgccaacggtgcgcagtcggtcatcgacgagttcatctcctcggcc
gaccagaagtgggcgcagcagtcgagcgtcgtgctgctgctcccccacggctacgagggc
caaggacccgaccactcgtcggcgcgcatcgagcgctacctgcagatgtgcgcgcaggac
aacatgatcgtcgcgcgtccctcgacccccgcgtcgtacttccacctcctgcgtcgtcag
gcgtaccagcgcccccgccggccgctcatcgtcttcacgccgaaggccatgctgcgactg
cgcggcgcgacgagcccggtcgaggacttcctcgagggccgcttcgagccggtcctcgac
gacgaccgcggtctcgacgccggcgccgtcacccgcgtgctcctgcacgcgggcaagatc
cactgggatctgcgggccgaactcgacaagaacccgaaccccgagatcgccctcgtgcgc
ctggagcagtactacccggcgccgatcgacgaactcaaccgggttctcgcgacctacccg
aacgccgagctggtctgggttcaggacgagcccgagaaccagggtgcgtggccgttcatc
gccctcgaggtcgatgacaagctcggtcgcccgatccgcgtcatctcgcgcgcggccgcc
gcatcgacggcgaccggctccccgaaggtgcacgcgaacgagcacgccgagatcatgaag
gccgcgctcgcgcgctga

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