KEGG   Rhodoluna sp. KAS3: RKAS3_08920
Entry
RKAS3_08920       CDS       T09960                                 
Symbol
kgd
Name
(GenBank) alpha-ketoglutarate decarboxylase
  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
rhok  Rhodoluna sp. KAS3
Pathway
rhok00020  Citrate cycle (TCA cycle)
rhok00630  Glyoxylate and dicarboxylate metabolism
rhok00785  Lipoic acid metabolism
rhok01100  Metabolic pathways
rhok01110  Biosynthesis of secondary metabolites
rhok01120  Microbial metabolism in diverse environments
rhok01200  Carbon metabolism
rhok01210  2-Oxocarboxylic acid metabolism
Module
rhok_M00009  Citrate cycle (TCA cycle, Krebs cycle)
rhok_M00011  Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate
Brite
KEGG Orthology (KO) [BR:rhok00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    RKAS3_08920 (kgd)
   00630 Glyoxylate and dicarboxylate metabolism
    RKAS3_08920 (kgd)
  09108 Metabolism of cofactors and vitamins
   00785 Lipoic acid metabolism
    RKAS3_08920 (kgd)
Enzymes [BR:rhok01000]
 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)
     RKAS3_08920 (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
     RKAS3_08920 (kgd)
  2.3  Acyltransferases
   2.3.1  Transferring groups other than aminoacyl groups
    2.3.1.61  dihydrolipoyllysine-residue succinyltransferase
     RKAS3_08920 (kgd)
 4. Lyases
  4.1  Carbon-carbon lyases
   4.1.1  Carboxy-lyases
    4.1.1.71  2-oxoglutarate decarboxylase
     RKAS3_08920 (kgd)
SSDB
Motif
Pfam: E1_dh 2-oxoacid_dh OxoGdeHyase_C Transket_pyr 2-oxogl_dehyd_N
Other DBs
NCBI-ProteinID: BDS49315
LinkDB
Position
921718..925452
AA seq 1244 aa
MVSLSGNAENTNGENNFGANDWLVDEMYAQYQSNPDSVDKAWWPILENYHPTQTPHATAS
SASPAAPQGSAPAPAAQQVIPAEPQTIPAAPLVAKTTRVEARPQPIPAQAPVTEVITQVA
EAEEAQDKVNVLKGMSKALATNMDASLQVPTATSVRTIPAKLLIDNRIVINSHLARTRGG
KVSFTHIIGYAIIRALKEFPSQNVYYDIIDDKPAAVTPANINFGLAIDIPKEDGTRALLV
PNIKRAQRLNFAEYLSAYEDLVKKARDNKLTAGDFAGSTVSLTNPGGIGTVHSVPRLMKG
QGCIIGAGALDYPAEFQGMSDAQLSKLGVSKTITLTSTYDHRVIQGAGSGEFLKKIHELL
LGARGFYDEIFADLRIPYEPVKWVTDFERNENDDRTKETRIQELINAYRVRGHLMADVDP
LEYKQRSHEDLDILNHGLSLWDLDRTFKTGGFGGKAKAEFREIYKILRDSYCRTVGVEYM
HIQDPAQRKWFQSKLERPYAKPTRDEQLRILEKLNEAEAFETFLQTKFVGQKRFSLEGGE
STIAALDEILQEAADAQLEEVVIGMAHRGRLNVLTNVAGKTYGQVFKEFEGNTDTKTVQG
SGDVKYHLGTEGVFTNMDGKQVKVSLAANPSHLEAVNPVVEGIVRAKLDRTDSVINNSFP
VLPVVIHGDAAFAGQGVVPEVLNMSQLRGYKTGGTINIVINNQVGFTTPPGESRSTVYAT
DVAKGIQAPIFHVNGDDPEAVVRVARLAFEFRQEFKKDVVLDIICYRRRGHNEGDDPSMT
QPLMYNLIEAKRSVRTLYLESLVGRGDITHEEFEAANAGFQTRLENAFVEVHEAMIAAPA
LPSRPVGIGTTASDQTGVAQATAISRAVVEQIGDAHNNQPPGFHVHPKLQQLLTKRVEMS
REGGIDWGFGELLALGSLLIEGKTVRMAGQDSRRGTFVQRHAVFHDRENGQEWMPLRNLS
ADQAKFYIYDSLLSEYAAMGYEYGYAVENKDALVLWEAQFGDFANGAQTIIDEFISSAEQ
KWNQHSGVVLLLPHGYEGQGPDHSSARIERYLQLCAENNMTVAQPSTPASHFHLLRRQAY
STPKRPLIVFTPKSMLRLKSAASSVEDFTNGTFQPVIDDQQGLDRNAVKRVLFCSGKIYW
DLLAEAQKRNDGTTAIVRVEQLYPTPVDEIKATYAQYPNAELVWVQDEPANQGPWTYIGL
FLPRYMDGKVAKLVSRPASASPATGSAKRHAVEQADLIARAFSI
NT seq 3735 nt   +upstreamnt  +downstreamnt
gtggtttctctgtcaggcaacgctgagaacacaaatggcgaaaacaatttcggagccaat
gactggctagtggacgaaatgtacgcccagtatcagtcgaaccccgattcggtcgataag
gcttggtggccaattctcgagaactaccacccaacccaaacacctcatgccaccgcgtcg
agcgcaagtccagccgctccgcagggtagtgcgccggccccggccgcccagcaggttatt
ccagctgaaccgcagaccattcctgccgctcccctagtggcaaaaaccacccgcgttgag
gcccgccctcagccaattccagctcaggcaccggtcaccgaagttattactcaggtcgct
gaagctgaagaggcgcaggacaaggtaaacgtactaaagggcatgtcaaaggccctagca
accaacatggatgcttcgctacaggttccgaccgcgacctcggttcgaaccattccggcc
aaacttttgattgacaaccgcattgtgatcaacagccacttggctcgaacccgtggcggc
aaggtttccttcacccacatcatcggttacgcgatcatccgcgctctaaaagagtttcca
agccaaaacgtctactacgacatcatcgatgacaagccagctgcggtaacgcctgcgaac
atcaattttggactcgcgatcgacattccaaaagaagacggcacccgtgcacttttggtt
ccaaacatcaagcgcgctcagcgactcaactttgccgagtacctaagcgcctatgaagac
ctggtcaagaaggcacgtgacaacaagttgaccgccggtgattttgccggctcaacagtt
tcactgaccaacccaggtggaatcggaaccgttcactcggtacctcgcctaatgaagggc
cagggctgcattatcggcgccggcgcattggactacccggctgagttccagggaatgtca
gacgctcagctgtcaaagttgggtgtcagcaagaccatcacactaacctcaacctacgac
caccgtgttatccaaggcgctggttcaggtgaattcctcaagaagatccacgaactcctg
ctgggcgctcgtggcttctacgacgaaatctttgccgaccttcgcattccttacgagccg
gtcaaatgggtcaccgacttcgagcgaaacgaaaacgacgaccgcaccaaagagacccgc
atccaggaactaatcaacgcctaccgcgttcgaggccacttgatggccgatgttgacccg
cttgagtacaagcagcgctcgcacgaggatcttgacattttgaaccacggtttgagcctc
tgggacctagaccgaaccttcaagaccggtggttttggtggcaaggccaaggctgagttc
cgtgagatttacaagattcttcgtgacagctactgccgcaccgttggtgttgagtacatg
cacattcaagacccagcccagcgcaagtggttccagtccaagcttgagcgcccatacgct
aagccgactcgcgacgagcagctgcgcattcttgaaaagctgaatgaagccgaggctttt
gaaactttcttgcagaccaagtttgttgggcaaaagcgcttcagccttgagggtggcgaa
tccaccatcgcagcccttgatgaaatcttgcaagaggccgccgacgcacagcttgaagaa
gttgtaattggtatggctcaccgtggccgcctaaacgttctaaccaacgttgccggcaag
acctacggtcaggtcttcaaagaatttgaaggcaacaccgacaccaagacagttcagggc
tcaggtgacgttaagtaccatctaggcaccgagggtgttttcaccaacatggacggcaag
caggttaaagtttcacttgccgctaacccatctcacctcgaggctgtaaacccggtggtc
gagggtatcgtgcgcgccaagcttgaccgcaccgactctgtgatcaacaacagcttcccg
gttcttccggttgttatccacggcgatgctgcttttgcaggccagggcgtagtgcctgag
gtactgaacatgtctcagttgcgtggatacaaaactggcggaaccatcaacatcgtcatc
aacaaccaggttggtttcaccactcctccaggtgagtctcgctctaccgtttatgcaacc
gacgttgcgaagggtatccaggcgccaattttccatgtaaacggcgatgaccctgaagca
gtagtccgcgtggcacgtctagcttttgagttccgccaggaattcaaaaaagatgtcgtt
cttgacatcatttgctaccgtcgccgtggtcacaacgagggcgatgacccatcgatgacc
cagcctttgatgtacaacctgatcgaggccaagcgttcagtacgcaccctttacctagag
tcactcgttggccgcggtgacatcactcacgaagagtttgaagctgcaaacgctggcttc
cagacccgccttgagaatgcattcgtcgaggttcacgaggccatgatcgctgcaccggct
ctgccgtcgcgcccagttggcatcggtaccaccgcaagcgaccagaccggagttgcgcag
gccactgcgatttcacgcgcggttgttgagcaaatcggtgatgcccacaacaaccagcca
ccgggcttccacgtgcaccctaagcttcagcagctgctgaccaagcgtgttgagatgagc
cgcgaaggcggcatcgactggggcttcggcgagctactagctctaggctcgttgcttatc
gaaggcaaaaccgttcgcatggccggccaggacagccgacgcggcacctttgttcagcgt
cacgctgtgttccacgatcgcgaaaacggtcaagagtggatgccactgcgcaacctgtct
gctgaccaagccaagttctacatctatgactcactgcttagcgaatacgcggccatgggt
tacgaatacggctatgcagttgaaaacaaggatgcacttgttctatgggaagcacagttt
ggtgactttgccaacggcgcgcagaccatcatcgatgaattcatttcatcagccgagcag
aaatggaaccagcactccggtgtagttctgttgctgcctcacggctacgaaggccagggg
ccagaccactcatcagcccgaatcgagcgctacctacagttgtgtgctgaaaacaacatg
actgttgctcagccttcgactccggcatctcacttccacctacttcgtcgccaggcttac
tcgactccgaagcgcccactgattgtgttcactccgaagtcaatgttgcgtttgaaatca
gcagcatcgtctgttgaggacttcaccaatggaaccttccagccggtaattgatgaccag
cagggtctggacagaaacgcagtcaagcgagtgctgttctgttcaggcaagatctactgg
gaccttttggcagaggctcaaaagcgcaacgatggcaccaccgcaatcgttcgtgttgag
cagctctacccaaccccggttgatgaaatcaaggcgacctacgcacagtatccaaacgca
gaattggtttgggtacaggatgagccggctaaccagggaccatggacctacatcggtcta
ttcttgcctcgttacatggatggcaaggtggccaagttggtttcacgcccagctagcgca
tcaccagcaacaggttctgcaaagcgccacgctgttgagcaagctgaccttattgccaga
gcgttctcgatctaa

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