KEGG   Thiolapillus brandeum: TBH_C1053
Entry
TBH_C1053         CDS       T03600                                 
Name
(GenBank) pyruvate dehydrogenase E1 component
  KO
K00163  pyruvate dehydrogenase E1 component [EC:1.2.4.1]
Organism
tbn  Thiolapillus brandeum
Pathway
tbn00010  Glycolysis / Gluconeogenesis
tbn00020  Citrate cycle (TCA cycle)
tbn00620  Pyruvate metabolism
tbn00785  Lipoic acid metabolism
tbn01100  Metabolic pathways
tbn01110  Biosynthesis of secondary metabolites
tbn01120  Microbial metabolism in diverse environments
tbn01200  Carbon metabolism
tbn01210  2-Oxocarboxylic acid metabolism
Module
tbn_M00307  Pyruvate oxidation, pyruvate => acetyl-CoA
Brite
KEGG Orthology (KO) [BR:tbn00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    TBH_C1053
   00020 Citrate cycle (TCA cycle)
    TBH_C1053
   00620 Pyruvate metabolism
    TBH_C1053
  09108 Metabolism of cofactors and vitamins
   00785 Lipoic acid metabolism
    TBH_C1053
Enzymes [BR:tbn01000]
 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)
     TBH_C1053
SSDB
Motif
Pfam: PDH_E1_M Transketolase_C_1 Transketolase_N Transketolase_C
Other DBs
NCBI-ProteinID: BAO43982
UniProt: A0A7U6GI11
LinkDB
Position
1137592..1140249
AA seq 885 aa
MAEINDIDPQETGEWLEALEAVLENEGAERAHFLLEQLIEKARLSGAYLPYKATTAYLNT
IPPSKQPPFPGNRAMERRIRSFIRWNAMAMVVQANRKEPELGGHIASFASSATLFDVGFN
HFFRGSNEDKEGDLVFFQGHSAPGIYARAFLEGRITEDQLNKFRQESGGDGLSSYPHPWL
MPNFWQFPTVSMGLGPLMAIYQARFMRYMHDRGMADMDHRKVWAYMGDGEMDEPESLGAI
SLASRERLDNLVFVVNCNLQRLDGPVRGNGKIIQELEAVFRGAGWNVIKVVWGGYWDPLI
ARDKKGLLRKRMEEALDGDYQAYKAKGGAYTREHFFGKYPELLEMVANMSDEDIWRLNRG
GHDPIKVYAAYKAAMEHRGQPTVILAKTVKGYGMGEAGEGQNITHSQKKMGEDALRHFRD
RFNIPIPEDQLSSAPYFKPAEDSEEMKYLHERRQALGGYLPSRRTEAQSLEVPGLDAFQA
LLEGSGEREMSTTMAYVRFLTSLLRDKKVGKHVVPIVPDEARTFGMEGMFRQLGIYSHVG
QLYTPMDADQVMYYREDVKGQILQEGINEAGAMSSWIAAATSYSNHGVPMIPFYVYYSMF
GFQRVGDLAWAAGDMQARGFLMGGTAGRTTLSGEGLQHQDGHSHLASAGIPNCRSYDPTF
AYELAVILQDGMRRMYAEQENIFYYVTIMNENYVHPPMPKGVEEGIVKGMYLFKAGSRKK
KRVQLMGSGTILREVIAAAELLEKDWKIAADVWSITSFTELARDGMECERWNRLHPMEKP
RMPYVTQQLKDAQGPVVASTDYVRMFADQIRPYLDGRGCITLGTDGFGRSDLRRRLREFF
EVNRHHVAVAALKALADEGSVDADLVAQAIKAYRIDPEKPNPTKV
NT seq 2658 nt   +upstreamnt  +downstreamnt
atggcagaaatcaacgacatcgatccccaggagaccggggaatggctggaggctctggag
gccgtgttggagaacgaaggcgcggagcgtgcccacttcctccttgaacagctcattgaa
aaggctcgcctttcaggcgcctaccttccctacaaggctaccaccgcctatctgaatacc
attccgccatcgaagcagccgccattcccgggcaaccgggccatggagcgccgtatccgt
tcatttatacgctggaatgccatggccatggtggtgcaggccaatcgcaaggagcccgag
ctgggagggcatatcgccagctttgcttccagcgctacgctctttgatgtgggattcaac
catttcttccggggcagcaatgaagacaaggaaggggatctggtgttcttccaggggcat
tccgcaccggggatctatgcccgggctttcctggaaggacgaatcactgaagatcagctc
aacaagttccgccaggagtccggaggtgatggcctgtcttcctatccccatccctggctg
atgcccaatttctggcagtttcccacggtgtccatgggattgggtcccctgatggccata
tatcaggcacgtttcatgcgctacatgcacgatcggggcatggcggacatggatcatcgc
aaggtgtgggcctacatgggcgatggtgagatggatgagccggagtccctgggcgccatt
tccctggcctcacgggagcgcctggacaatctggtattcgtggtcaattgtaacctgcag
cgtctggatggcccggtgcgtggcaacggcaagattattcaggagctggaggccgtgttc
cggggggccggctggaacgtcataaaagtcgtctggggcggttactgggatccccttatc
gcccgggacaagaagggactgctgcgcaaacgcatggaagaagccctggatggcgactac
caggcctataaggccaagggcggtgcctacacgcgggagcattttttcggcaagtatccg
gagctcctggaaatggttgcgaatatgagcgacgaggatatatggcgcctgaaccggggt
ggccatgatcccatcaaggtctatgccgcctacaaggctgccatggagcatcggggccag
cctacagtgattctggccaagacagtgaagggctacggcatgggggaagccggggaaggg
caaaacatcacccattcccagaagaagatgggagaggatgccctgcggcattttcgggat
cgtttcaatatccccatccccgaggaccagctgtcctcggcaccgtacttcaagcctgcg
gaagatagtgaggaaatgaaatatctccatgagcgccgccaggctctgggcggttacctg
ccgtcccgccgcaccgaagcccagtctctggaagtgccgggactggacgcattccaggct
cttctggaaggcagcggcgagcgggagatgtccaccaccatggcctatgtgcgcttcctc
accagcctgttgcgggacaagaaggtgggtaagcatgtggtgcccattgttcctgatgag
gcgcgcacctttggcatggaaggcatgttccgtcaactggggatctattcccacgtgggc
cagctatacacacccatggatgcggatcaggtcatgtattaccgggaggatgtgaaaggc
cagatcctccaggaaggtatcaacgaagccggggccatgtcctcatggatcgcggctgcg
acatcctattcgaatcatggcgtgcccatgattcccttctatgtctattactccatgttt
ggtttccagcgggtaggggatctggcctgggccgccggagacatgcaggcacggggcttt
ctcatgggcggcacggccgggcgcaccaccctgtccggtgagggtctgcagcatcaggat
ggccacagccacctggcttcggcggggattcccaattgccgttcctatgatccgaccttt
gcctacgagctggccgtgatcctccaggatggtatgcggcgcatgtatgccgagcaggag
aatatcttctactacgtcaccatcatgaacgagaattatgttcacccccccatgcccaag
ggggtggaagagggtatcgtcaagggcatgtacctgttcaaagcgggttcgcgcaagaag
aagcgcgtgcagctcatgggctcgggtacgattctgcgggaggtcattgcagcagcagaa
ctgctggaaaaggactggaagatcgcagccgacgtgtggagtatcaccagtttcacggaa
ctggcccgggatggcatggaatgcgagcgctggaaccgcctgcatcccatggaaaagccg
cgcatgccttatgtgacgcagcagttgaaggacgcccagggtcccgtggtagcctccacg
gactatgtacgcatgtttgctgaccagattcgtccctatctggacgggcgtggctgtatc
actttgggtacggacggctttggccgatccgatctgcgccgcaggttgcgggagtttttt
gaggtcaatcgtcatcatgtagcagtggccgccctcaaggctctggcggatgaaggcagt
gtggatgccgacctggtggctcaggccatcaaggcctaccgtatcgatcctgaaaaaccc
aacccgaccaaggtgtga

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