KEGG   Gordonia insulae: D7316_01371
Entry
D7316_01371       CDS       T05722                                 
Symbol
kgd
Name
(GenBank) Multifunctional 2-oxoglutarate metabolism enzyme
  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
gom  Gordonia insulae
Pathway
gom00020  Citrate cycle (TCA cycle)
gom00630  Glyoxylate and dicarboxylate metabolism
gom00785  Lipoic acid metabolism
gom01100  Metabolic pathways
gom01110  Biosynthesis of secondary metabolites
gom01120  Microbial metabolism in diverse environments
gom01200  Carbon metabolism
gom01210  2-Oxocarboxylic acid metabolism
Module
gom_M00009  Citrate cycle (TCA cycle, Krebs cycle)
gom_M00011  Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate
Brite
KEGG Orthology (KO) [BR:gom00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    D7316_01371 (kgd)
   00630 Glyoxylate and dicarboxylate metabolism
    D7316_01371 (kgd)
  09108 Metabolism of cofactors and vitamins
   00785 Lipoic acid metabolism
    D7316_01371 (kgd)
Enzymes [BR:gom01000]
 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)
     D7316_01371 (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
     D7316_01371 (kgd)
  2.3  Acyltransferases
   2.3.1  Transferring groups other than aminoacyl groups
    2.3.1.61  dihydrolipoyllysine-residue succinyltransferase
     D7316_01371 (kgd)
 4. Lyases
  4.1  Carbon-carbon lyases
   4.1.1  Carboxy-lyases
    4.1.1.71  2-oxoglutarate decarboxylase
     D7316_01371 (kgd)
SSDB
Motif
Pfam: E1_dh 2-oxoacid_dh OxoGdeHyase_C Transket_pyr 2-oxogl_dehyd_N
Other DBs
NCBI-ProteinID: AZG44780
UniProt: A0A3G8JKP1
LinkDB
Position
1480502..1484362
AA seq 1286 aa
MSSSISDFGQNTWLVEEMYQQYKKDPNSVDPSWHEFLATYDPGSNGSSSDTAVAANGSAG
SGTASSRTAPAAAKPASTTAAPASPAPTKTEKTEKTEPAKQPSKQVTLDQQPTAAPARKS
GPTKESTATKAASGQSTASRDGSARSQNRAKPTVPSSAGSTSAEDENKVLRGPAAAIAKN
MSASLQVPTATSVRAIPAKLMIDNRIVVNNHLARTRGGKISFTHILGYAIVQGIKAFPNM
NRHFAEVDGKPNVVTPAHTNLGLAIDLVGKDGNRTLVVAAIKGCETMGFAEFYTAYQDIV
RRARDGKLTGDDFAGVTISLTNPGTIGTVHSVPRLMKGQGAIIGAGAMEYPAEFQGCSDE
QIAELGVGKLMTLTSTYDHRIIQGAESGDFLRTIHELLLDDAFYDEVFTAFHIPYEPVRW
RRDIPAGLVDKSTRVLELIAAYRNRGHLMADIDPLMMDSDARASHPDLNVLTYGLTLWDL
DRAFNVGGFHGQDKMKLRDVLSILRDAYCRHVGVEYTHILEPEQQRWIQERVEIKHVKPP
VAEQKYILSKLNAAEAFETFLQTKYVGQKRFSLEGAESVIPMMDAVIDQSAEHSLNEVVI
GMPHRGRLNVLANIVGKPYSKIFTEFEGNLNPSQAHGSGDVKYHLGAEGKYYQMFGDNEI
NVSLTANPSHLEAVDPVLEGLVRAKQDLLDDDEQFSVLPLMLHGDAAFAGQGVVAETLNM
AMLPGYRTGGTIHIVVNNQVGFTTAPEHSRSTEYCTDVAKMIGAPIFHVNGDDPEASVWV
AKMAVDYRAAFHKDVVIDLVCFRRRGHNEGDDPSMTQPAMYDVIDTKRGVRKSYTEALIG
RGDISTKEAEDALRDYQGQLERVFNEVKELEKYTAEPSPSVESDQTLPTKLVTAVDKEVL
GSIGDAFLHVPDGFEPHPRVKPVLERRHEMSRHGGIDWAFAELLAFGSLVLEGRTVRLSG
QDSRRGTFTQRHSVLIDRDSGAEYTPLNHLKPVEGEDAGGRFMVYDSPLSEFAVVGFEYG
YSVGSPDALVMWEGQFGDFVNGAQSIIDEFISSGEAKWGQLSDVVLLLPHGHEGQGPDHT
SGRIERFLQLCAEGSMTVALPSTPASYFHLLRRHVLDGISRPLIVFTPKSMLRNKLAVSP
IEEFTDDKFRSVIDDPKFVSGNGDRDKVKRVLLVSGKLYYELAARRDKEKRDDVAVVRIE
QLYPVPHRRLRNTLEQYGNADDFVWVQEEPANQGPWPFLGLWLPEMLPDLLKGLRRASRR
PMSAPSSGSSKVHAVEQQEILDEAFG
NT seq 3861 nt   +upstreamnt  +downstreamnt
gtgagcagttcgatatcggatttcggacaaaatacgtggctggtcgaggagatgtaccag
caatacaagaaggaccccaattcggtcgacccgagttggcacgaattcctggccacctat
gaccccggttcgaacggctcatcctccgacaccgcagtcgccgccaatggcagcgccgga
tcgggcaccgcctcctcccgcaccgcacccgcagcagccaagcccgcgagcaccaccgca
gcccccgcctcccccgccccgacgaagaccgagaagaccgagaagaccgagccggccaag
cagccctcgaagcaggtcaccctcgaccagcagccgaccgcggcccccgcccgcaagtcc
ggcccgacgaaggagtccaccgccaccaaggccgcgtccgggcagagcaccgcgagccgc
gacgggtcggcccgttcgcagaaccgcgcgaagccgaccgtgccgtcgtccgccggcagc
acctccgccgaggacgagaacaaggtcctgcgtggcccggcggccgccatcgccaagaac
atgtcggcgtccctgcaggttccgacggccaccagcgtgcgggcgatccccgcgaagctg
atgatcgacaaccgcatcgtcgtgaacaaccatctcgcccgcacccgcggcggcaagatc
agcttcacccacatcctcggctacgcgatcgtccaggggatcaaggcattcccgaacatg
aaccggcacttcgccgaggtcgacgggaagcccaacgtggtcaccccggcccacaccaat
ctgggcctggccatcgacctggtcggcaaggacggcaaccgcacgctggtggtcgcggcc
atcaagggctgcgagaccatgggcttcgccgagttctacacggcctaccaggacatcgtc
cgccgcgcccgcgacggcaagctgaccggcgacgacttcgccggcgtgaccatctcgctc
accaaccccggcaccatcggcacggtccactcggtgccgcgcctgatgaagggccagggc
gcgatcatcggcgccggcgcgatggagtacccggccgagttccagggatgcagcgacgag
cagatcgccgagctcggcgtcggcaagctgatgacgctgacgtcgacctacgaccaccgc
atcatccagggtgcggagtccggcgacttcctgcgcaccatccacgaactgctcctcgac
gacgcgttctacgacgaggtcttcaccgcgttccacatcccctacgagccggtccgctgg
cgccgcgacattcccgcaggcctggtcgacaagagcacccgcgtactggaactcattgcg
gcataccgcaatcgcggacacctgatggccgacatcgatccgttgatgatggacagcgat
gcccgggccagccatcccgatctcaacgtcctcacctacggtctgacgctctgggatctc
gaccgcgcgttcaacgtcggcggcttccacggccaggacaagatgaagctgcgcgacgtc
ctgtcgatcctgcgcgacgcgtactgccggcacgtcggcgtggagtacacccacatcctc
gaacccgagcagcagcgctggattcaggaacgggtggagatcaagcacgtcaaaccgccg
gtcgccgagcagaagtacatcctgtccaaactcaacgccgccgaggccttcgagaccttc
ctgcagaccaagtacgtcggccagaagcgcttctcgctcgagggtgccgagtcggtcatc
ccgatgatggacgcggtgatcgaccagagcgccgagcacagcctcaacgaggtcgtcatc
ggcatgccgcaccgcggtcgcctcaacgtcctcgcgaacatcgtcggcaagccgtactcg
aagatcttcaccgagttcgagggcaacctgaacccgtctcaggcgcacggttccggtgac
gtgaagtaccacctgggcgccgagggcaagtactaccagatgttcggcgacaacgagatc
aacgtctcgctgaccgccaacccgagccacctcgaagcggtcgacccggttctcgaggga
ctcgtccgcgccaagcaggatctgctcgacgacgacgagcagttctcggtgctgccgttg
atgctgcacggtgacgccgcgttcgccggccagggcgtggtcgccgagacgctgaacatg
gcgatgctgccgggctaccgcaccggcggcacgatccacatcgtggtcaacaaccaggtc
ggattcaccacggcgccagagcattcccgctcgaccgagtactgcacggatgtcgcgaag
atgatcggcgcaccgatcttccacgtgaacggcgacgatccggaggcctccgtgtgggtc
gccaagatggcggtcgactaccgcgcggcattccacaaggacgtcgtgatcgacctggtg
tgcttccgccgtcgcggacacaacgagggcgacgacccgtcgatgacccagccggccatg
tacgacgtgatcgacaccaagcgcggcgtccgcaagagttacaccgaagccctgatcggc
cgtggtgacatctcgaccaaggaggccgaggacgccctgcgcgactaccagggccaactc
gagcgggtgttcaacgaggtcaaggaactcgagaagtacaccgcggaaccgagtccgtcg
gtcgagtcggatcagacgctgccgaccaagctcgtcaccgcggtcgacaaagaggtcctc
ggcagtatcggcgacgcgttcctgcatgtccccgacggtttcgagccgcacccccgcgtg
aagcccgtcctggagcggcgccacgagatgtcgcggcacggcggcatcgactgggcgttc
gccgagctgctggcgttcggctccctcgtcctcgagggccggaccgtgcgtctgtccggc
caggactcccgccgcggtaccttcacgcagcggcactcggtgctcatcgaccgcgacagc
ggtgcggagtacacgccgctcaaccacctcaagcccgtcgagggcgaggacgccggcggc
cgcttcatggtctacgactccccgctgtcggagttcgcggtggtcggcttcgagtacggc
tattcggtcggcagccccgacgcgctggtgatgtgggaagggcagttcggcgacttcgtc
aacggcgctcagtccatcatcgacgagttcatctcgtccggtgaggccaagtggggtcag
ctctccgacgtggtgctgctgctcccgcacggccacgagggtcagggtcccgaccacacg
tcgggtcgcatcgagcgattcctgcagctgtgcgccgagggctcgatgaccgtcgcactg
ccgtccaccccggccagctacttccacctgctccgccggcacgtcctcgacggcatcagc
cgcccgctgatcgtgttcaccccgaagtcgatgctgcgcaacaagcttgccgtcagcccg
atcgaggagttcaccgacgacaagttccgttcggtgatcgatgatccgaagttcgtgtcc
ggcaacggggatcgcgacaaggtcaagcgcgtgctgctggtgagcggaaagctctactac
gagctggccgcccgccgggacaaggagaagcgcgacgacgtcgcggtcgtgcggatcgaa
cagctctacccggtgccgcaccgccgcctgcgcaacaccctcgagcagtacggcaacgcc
gacgacttcgtgtgggtccaggaggagccggccaaccagggcccgtggccgttcctcgga
ctctggctgccggagatgctgccggacctgctcaagggtctgcgccgcgcctcgcgtcgc
ccgatgtcggcgccgtcgtcgggatcgagcaaggtgcacgccgtggagcagcaggagatc
ctcgacgaggcgttcggctga

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