KEGG   Pseudomonas defluvii: QEP73_00665
Entry
QEP73_00665       CDS       T10501                                 
Symbol
mdeB
Name
(GenBank) alpha-ketoglutarate dehydrogenase
  KO
K00163  pyruvate dehydrogenase E1 component [EC:1.2.4.1]
Organism
pdeu  Pseudomonas defluvii
Pathway
pdeu00010  Glycolysis / Gluconeogenesis
pdeu00020  Citrate cycle (TCA cycle)
pdeu00620  Pyruvate metabolism
pdeu00785  Lipoic acid metabolism
pdeu01100  Metabolic pathways
pdeu01110  Biosynthesis of secondary metabolites
pdeu01120  Microbial metabolism in diverse environments
pdeu01200  Carbon metabolism
pdeu01210  2-Oxocarboxylic acid metabolism
Module
pdeu_M00307  Pyruvate oxidation, pyruvate => acetyl-CoA
Brite
KEGG Orthology (KO) [BR:pdeu00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    QEP73_00665 (mdeB)
   00020 Citrate cycle (TCA cycle)
    QEP73_00665 (mdeB)
   00620 Pyruvate metabolism
    QEP73_00665 (mdeB)
  09108 Metabolism of cofactors and vitamins
   00785 Lipoic acid metabolism
    QEP73_00665 (mdeB)
Enzymes [BR:pdeu01000]
 1. Oxidoreductases
  1.2  Acting on the aldehyde or oxo group of donors
   1.2.4  With a disulfide as acceptor
    1.2.4.1  pyruvate dehydrogenase (acetyl-transferring)
     QEP73_00665 (mdeB)
SSDB
Motif
Pfam: PDH_E1_M Transketolase_C_1 Transketolase_N Transket_pyr
Other DBs
NCBI-ProteinID: WJM98816
LinkDB
Position
complement(143394..146060)
AA seq 888 aa
MAGQPGHDPQVDPDPGETAEWLDALDSTLRHCGPARARFLLEQLEAHARELGLERGAQAY
SAYRNTLSVEQQGAYPGDLEIEERITRLLRWNALAMVVRANHAYGDLGGHIASYASAAEI
FEVGFQHFFKGGEPQHADLVFFQPHSAPGVYARAFLEGRLSEAQLSRYRQEVEGGGLCSY
PHPWLMPDFWQFPTGSMGIGPISAIYQARFMRYLQHRGLADTRARHVWGVFGDGEMDEPE
SIAGLTLAAREQLDNLTFVVNCNLQRLDGPVRGNGQIVQELEALFSGAGWQVIKVLWGSE
WDALFARDSEHVLLRQLAATPDGQFQTLGANDGVYNLEHFFNQSPALQQLVAHMSSAEIN
ALKRGGHDFRKLYAAFAAAKACKGRPTVILAKTKKGYGMSAAGESRMTAHQAKKLDVQAL
LDYRDRFHLPLSDADVEQLRFYRPPEDSPEIRYLQARRAALGGFLPARRSEVRSIPVPSL
DASAGFALQADGKEMSTTMAAVRVLSAWLKAPELGPRIVPIVADEARTFGMASLFRQIGI
YSPQGQRYEPEDAGSLLFYKEAQDGQLLEEGITEAGALSSWVAAATSYAVHGEPMLPVYI
YYSMFGFQRVGDLIWAAADQRARGILLGATAGRTTLGGEGLQHQDGSSVVMASMVPNCRA
WEPCFAGELAVILEHAARRMLGEQCDEFHYIAVMNENYPQPSLPEAVHAGVLRGMYRFTE
HSLEHAVGRVRLLGSGAILREVIAASELLANEWQVESDVFSVTSFSELARDARDAQRAGR
CAKAGVAASYVQQCLDGSAPIVAASDYVRAWPQLIAEYLSAPYVTLGTDGFGRSDTRQQL
RRFFEVDRFSIVLASLHSLVQNGSLAPSVLEQAVARYPVCSETAPWYS
NT seq 2667 nt   +upstreamnt  +downstreamnt
atggcagggcagcctggacatgacccgcaggtcgatcccgatcccggcgaaacggccgag
tggctggatgcgctggactcgaccttgcggcattgtggcccggcgcgtgcgcgatttttg
ctggagcagctggaggcgcacgcccgtgagttgggcctagagcgcggtgctcaggcgtat
tcggcgtaccgcaatacgttgtcggtagagcagcagggcgcctatcccggtgacctggaa
attgaagagcggattacccgtttgctgcgctggaacgcgttggcaatggtggttcgagcc
aaccatgcctacggtgatctgggtgggcatatcgccagctacgcttcggccgccgaaatt
ttcgaggtgggttttcagcatttcttcaagggcggtgagcctcagcacgccgatctggtg
ttttttcagccgcattcagcccctggtgtttacgcccgggcgttccttgaagggcgactg
agtgaggcgcaactgtcgcgctatcggcaggaggtcgaggggggcggcctgtgttcttat
ccgcatccctggttgatgcctgacttctggcagttccccaccggttcgatgggaatcggc
ccaatcagtgcaatataccaggcgcgtttcatgcgttatctgcagcaccgaggcttggcg
gatacgcgtgctcggcatgtatggggcgtgttcggggacggtgaaatggacgagccggag
tccattgccgggctgaccctggcggcccgtgagcaactggataacctgacgttcgtggtc
aactgcaacttgcagcgcctggacgggccggtacggggcaatggacagattgtccaggag
ctggaagccctgttcagcggtgctggctggcaggtgatcaaggtgctgtggggttcggag
tgggacgcgctgtttgcccgcgacagcgagcatgtgttgttgcgtcagcttgcggcgacc
cctgacgggcagttccagaccttgggggccaatgacggcgtctataatcttgagcatttc
ttcaatcagagcccggcgttgcagcagttggtcgcgcacatgagctcggccgagatcaat
gccctgaagcgcggtggccacgattttcgcaagctgtatgccgccttcgctgcggccaag
gcctgtaaggggcggccaaccgtgatcctggccaagaccaagaagggctatggcatgagt
gctgccggtgagtcgcggatgacggcgcaccaggcgaaaaaactcgatgtgcaggccctc
ttggactatcgcgaccgtttccatctgccgctctcggatgccgatgtcgaacagctgcgt
ttctaccgtccaccggaagacagcccggaaatacgctatctgcaagcgcgtcgtgcggca
ctggggggctttttgccagcgcgtcgcagtgaggttcggtcgataccggtgccatcgctg
gatgccagtgcagggtttgcgctgcaggcggatggcaaggaaatgtctaccaccatggcg
gcggttcgcgtactcagcgcctggttgaaagcgccggagctggggccgcgcattgtgccg
atcgtggcggatgaggcgcgcacattcggcatggccagcctgttccggcagatcggtatc
tactcgccgcaggggcagcgctacgagccggaagatgccggttcactgttgttctacaag
gaagcgcaagacggtcagttgttggaagagggcataaccgaagctggggcgctgtcctcc
tgggttgcggctgccacgtcgtatgcggtgcacggcgaaccgatgctgcctgtgtatatc
tattactcgatgttcggtttccagcgggtgggcgacctgatctgggccgccgccgaccag
cgtgcccggggcattctgctgggggctactgccggacgtaccacgctcggtggtgaaggc
ctgcagcatcaggatggttccagcgtggtgatggcgtcgatggtgcccaattgccgggcc
tgggagccatgcttcgcgggtgagttggcggtcattctggagcatgctgcgcggcggatg
ctcggcgaacagtgcgacgagttccactacatcgctgtgatgaacgaaaactatccacag
ccctcgctgcccgaggccgttcatgcgggtgtgctgcgaggtatgtaccggttcactgag
cactcgctggagcacgccgtggggcgcgtacgtctgctgggctccggggcaattctgcga
gaggtgattgccgccagtgagctgctggcgaacgagtggcaggttgaaagtgacgtgttc
agtgtcaccagcttcagtgagctggctcgcgatgcgcgcgatgcacaacgtgcaggccgt
tgcgcgaaggcaggggtagcagccagttacgtccagcagtgtttggatgggagcgcgccg
atcgtcgctgccagtgattatgtgcgggcctggccgcagttgattgccgagtacctgtcg
gcgccttatgtcaccttgggcactgacggtttcggtcgcagtgatacgcggcagcagtta
cgtcggttctttgaggtcgaccgcttcagcattgtcctggccagcctgcatagcctggtg
cagaacgggtcgttggcaccgagtgtgctggagcaggccgtagcgcggtatcccgtctgc
agcgagacggcgccatggtatagctga

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