KEGG   Pseudomonas fluorescens A506: PflA506_0451
Entry
PflA506_0451      CDS       T02114                                 
Symbol
aceE
Name
(GenBank) pyruvate dehydrogenase (acetyl-transferring), homodimeric type
  KO
K00163  pyruvate dehydrogenase E1 component [EC:1.2.4.1]
Organism
pfc  Pseudomonas fluorescens A506
Pathway
pfc00010  Glycolysis / Gluconeogenesis
pfc00020  Citrate cycle (TCA cycle)
pfc00620  Pyruvate metabolism
pfc00785  Lipoic acid metabolism
pfc01100  Metabolic pathways
pfc01110  Biosynthesis of secondary metabolites
pfc01120  Microbial metabolism in diverse environments
pfc01200  Carbon metabolism
pfc01210  2-Oxocarboxylic acid metabolism
Module
pfc_M00307  Pyruvate oxidation, pyruvate => acetyl-CoA
Brite
KEGG Orthology (KO) [BR:pfc00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    PflA506_0451 (aceE)
   00020 Citrate cycle (TCA cycle)
    PflA506_0451 (aceE)
   00620 Pyruvate metabolism
    PflA506_0451 (aceE)
  09108 Metabolism of cofactors and vitamins
   00785 Lipoic acid metabolism
    PflA506_0451 (aceE)
Enzymes [BR:pfc01000]
 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)
     PflA506_0451 (aceE)
SSDB
Motif
Pfam: PDH_E1_M Transketolase_N Transketolase_C Stevor
Other DBs
NCBI-ProteinID: AFJ55823
LinkDB
Position
complement(520007..522652)
AA seq 881 aa
MQDLDPVETQEWLDALESVLDKEGEDRAHYLMTRMGELATRSGSQLPYAITTPYRNTIPV
THEARMPGDLFMERRIRSLVRWNAMAMVMRTNLKDSDLGGHISSFASSATLYDIGFNYFF
QAPTDEHGGDLIYFQGHTSPGVYARAFMEGRISEEQMNNFRQEVDGQGLSSYPHPWLMPD
FWQFPTVSMGLGPIQAIYQARFMKYLEARGFIPEGKQKVWCFLGDGECDEPESLGAISLA
GREKLDNLIFVINCNLQRLDGPVRGNGKIIQELEGVFRGAQWNVTKVIWGRFWDPLLAKD
VDGILQRRMDEVIDGEYQNYKAKDGAFVREHFFNTPELKAMVADLSDDEIWKLNRGGHDP
YKVYAAYHEAVNHKEQPTVILAKTIKGYGTGAGEAKNTAHNTKKVDVDSLKLFRDRFDIP
VKDEELENLPFFKPEPNSAEARYLSERRTALGGFVPQRRANSFSVPTPDLSTLKAILDGS
GDREISTTMAFVRILAQLVKDKDIGPRIVPIIPDEARTFGMEGMFRQLGIYSSVGQLYEP
VDKDQVMFYKEDKKGQILEEGINEAGAMSSFIAAGTSYSSHNQPMLPFYIFYSMFGFQRI
GDLAWAAGDSRTRGFLIGGTAGRTTLNGEGLQHEDGHSHILAATIPNCRTFDPTYGYELA
VIIQDGMKKMTEEQQDVFYYITVMNESYQQPAMPAGVEEGIIKGMYLLEEDTKEAAHHVQ
LMGSGTILREVREAAKILRDEFNVGADVWSVTSFNELRRDGLAVERSNRLHPGQKPAKSY
VEECLAGRKGPVIASTDYMKLFAEQIRQWVPSKEFKVLGTDGFGRSDSRKKLRHFFEVDR
HFVVLAALEALADRGEIEPKVVADAIVKFGINPEKRNPLDC
NT seq 2646 nt   +upstreamnt  +downstreamnt
atgcaagacctcgatcccgtcgaaacccaggaatggctggacgccctggaatcggttctc
gacaaagaaggcgaagaccgtgctcactacctgatgacccgtatgggcgaactcgcgacc
cgcagcggctcgcaactgccttacgccatcactacgccataccgcaacaccatccccgtt
acccacgaagcacgcatgcctggcgacctgttcatggaacgccgcattcgctcgctggta
cgttggaacgccatggcgatggtaatgcgcacgaacttgaaagattcggacctgggcggt
cacatctccagcttcgcttccagcgcaaccctgtatgacatcggcttcaactacttcttc
caggccccgaccgacgaacacggcggcgacctgatctacttccagggccacacctcgcca
ggcgtctacgcccgtgcgttcatggaaggtcgcatcagcgaagaacaaatgaacaacttc
cgccaggaagtcgacggtcagggcctgtcgtcctacccgcacccttggctgatgcctgat
ttctggcagttcccgaccgtttccatggggctgggcccgatccaggcgatctaccaggca
cgcttcatgaagtacctggaagcccgtggcttcatccctgaaggcaagcagaaagtctgg
tgcttcctcggcgacggcgagtgcgacgagccggaatccctgggtgccatttccctggcc
ggccgcgagaagctcgacaacctgatcttcgtcatcaactgcaacctgcagcgcctcgac
ggcccggttcgcggcaatggcaagatcatccaggaactcgaaggcgtgttccgcggtgct
cagtggaacgtgaccaaagtcatctggggccgcttctgggacccactgctggccaaggac
gtcgacggtatcctgcagcgtcgcatggacgaagtcatcgacggcgagtaccagaactac
aaagccaaagacggcgcgttcgttcgcgagcatttcttcaacacgcctgaactcaaggcg
atggttgccgacctgtccgacgacgagatctggaagctcaaccgtggcggccacgacccg
tacaaggtctacgcggcgtaccacgaagcggtcaaccacaaagaacaacccaccgtcatc
ctggccaagaccatcaagggttatggcactggtgccggcgaagcgaagaacaccgcgcac
aacaccaagaaagtcgatgtcgacagcctgaagttgttccgcgaccgcttcgacatcccg
gtcaaggacgaagagctggagaacctgccgttcttcaagccagagccaaacagcgccgaa
gcccgctacctgagcgagcgccgcactgcactgggcggtttcgtgccacagcgccgcgcc
aacagcttcagcgtgccgacgccagacctgagcaccctcaaggctatccttgacggctcg
ggcgaccgtgaaatctccaccaccatggccttcgtgcgtatcctcgcgcaattggtcaag
gacaaggacatcggcccgcgcatcgtcccgatcatcccggacgaagcccgtaccttcggt
atggaaggcatgttccgtcagttgggcatctactcctccgtcggccagctctacgagcca
gtcgataaagaccaggtgatgttctacaaggaagacaagaagggccagatcctcgaagaa
ggcatcaacgaagcgggcgccatgagctccttcatcgctgccggtacttcgtactccagc
cacaaccagccaatgctgccgttctacatcttctactcgatgttcggcttccagcgtatc
ggcgacctggcctgggcagcaggcgacagccgtacccgtggcttcctgatcggcggtacc
gccggccgcaccacgctgaacggcgaaggcctgcaacacgaagacggtcacagccacatc
ctggctgccaccatcccgaactgccgcacctttgatccaacctacggctatgagctggcg
gtgatcatccaggacggcatgaagaagatgaccgaagagcagcaggacgttttctactac
atcaccgtgatgaacgagtcctaccagcagccagccatgccggccggtgtggaagaaggc
atcatcaagggcatgtacctgctcgaagaagacaccaaggaagcagcacaccacgtacag
ctgatgggctccggcaccatcctgcgtgaagtgcgtgaagcggcgaagatcctgcgcgac
gagttcaacgtcggtgccgacgtatggagcgtcaccagcttcaacgagctgcgccgcgac
ggcctggccgtggagcgcagcaaccgtctgcaccctggccagaagccagccaagagttac
gtcgaagagtgcctggccggccgtaagggtccagtcattgcctctaccgactacatgaag
ctgtttgctgaacaaattcgccagtgggtcccgtccaaggaattcaaagtcctgggcacc
gatggtttcggccgcagtgacagccgcaagaagctgcgtcacttcttcgaagtcgaccgt
cacttcgtggtgttggcagccctggaagccttggctgaccgtggtgagatcgaacctaag
gtggtggctgacgctatcgtcaagttcgggatcaacccggaaaaacgcaacccactggac
tgctga

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