Tunturiibacter gelidiferens: RBB81_17260
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Entry
RBB81_17260 CDS
T10211
Symbol
aceE
Name
(GenBank) pyruvate dehydrogenase (acetyl-transferring), homodimeric type
KO
K00163
pyruvate dehydrogenase E1 component [EC:
1.2.4.1
]
Organism
tgi Tunturiibacter gelidiferens
Pathway
tgi00010
Glycolysis / Gluconeogenesis
tgi00020
Citrate cycle (TCA cycle)
tgi00620
Pyruvate metabolism
tgi00785
Lipoic acid metabolism
tgi01100
Metabolic pathways
tgi01110
Biosynthesis of secondary metabolites
tgi01120
Microbial metabolism in diverse environments
tgi01200
Carbon metabolism
tgi01210
2-Oxocarboxylic acid metabolism
Module
tgi_M00307
Pyruvate oxidation, pyruvate => acetyl-CoA
Brite
KEGG Orthology (KO) [BR:
tgi00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
RBB81_17260 (aceE)
00020 Citrate cycle (TCA cycle)
RBB81_17260 (aceE)
00620 Pyruvate metabolism
RBB81_17260 (aceE)
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
RBB81_17260 (aceE)
Enzymes [BR:
tgi01000
]
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)
RBB81_17260 (aceE)
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Motif
Pfam:
PDH_E1_M
Transketolase_C_1
Transketolase_N
TPP_enzyme_C
Motif
Other DBs
NCBI-ProteinID:
XCB21322
UniProt:
A0AAU7YXL8
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Position
3993822..3996497
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AA seq
891 aa
AA seq
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MTTKLEEAAKQDFTAEVSEWIEAFDDVVAADWEQGSELLEALRKRAHEAGVPTPSELTTP
YRNTIPKHDELPYPGDRALERRVESLIRWNAMAMVHGQNKKDAGIGGHISTYSSLATLLE
VGFNHFFHAKYSVGGQEQPGDFVYFQGHASPGVYARAYLEGRLDDERLKNFRHELRETPG
LSSYPHPWLMPNFWNFPTVSMGIGPLNAIYQARFMRYLENRKLIEQTDRRVWAFVGDGET
DEVDSLGAISVAAREKLDNLIFVVNCNLQRLDGPVRGNKRIIDELEGVFRGAGWNVIKVI
WGSDWDALFERDHTGLLLRRMEECVDGEYQTFKAKGGAYLREHFFGKYPELLELVKDMSD
EQLGLLHRGGHDRTKIYNAYKRAVEHKGGPTVILAKTVKGHGLGSAQSRNATHSEKKLAD
DGLAAFVKRFEIPIPEEAAKSGTPYRPAQDSPEIVYMQERRKELGGYLPTREVPKINFKA
PGLEYFGEWTAGSNKRAVSTTMGFVSILRHLMKDPAIGKLIVPIVPDEGRTFGLESAIRQ
VGIYAPEGQKYSPHDADMLLYYREDKDGQILEEGITEAGSMASFTAAGTAYVNYKVPAIP
FYMYYSMFGFQRIGDMVWAFADSRGKGFLMGGTAGRTTMLGEGLQHQDGHSIVLASTVPT
CVTYDPAFVYELAVVIQDGIRRMYEKGEDCFYYITMYNEDYAMPAMPEGSAAGILRGIYK
LKPAAGEATVQLFGSGPILNEVLRAQEILASKYNVHADVWSVTSYTELRRDALAVERWNR
LHPAEKEKVPYVLQALGSSAGPIIATSDYMKSVPDLLSPWLPSRLVTLGTDGFGRSDNRE
HLRRHFEVSAEAIVGATLSKLARDGKFKPKAAQKALAELGLDVEAVDPARA
NT seq
2676 nt
NT seq
+upstream
nt +downstream
nt
atgacaacgaaactggaagaagccgccaagcaggactttaccgcagaggtctccgagtgg
attgaggcgtttgatgacgtcgttgccgcagactgggagcaggggtcggagttgctggag
gctctgcggaagcgcgcgcatgaggccggagtgccgacgccgagcgagctgacgaccccc
tatcgcaatacgattccaaagcatgacgagctgccatacccgggcgacagagcattggag
cgccgagtagagagcctgattcgctggaacgcgatggcgatggtgcatggtcagaacaaa
aaggacgccgggattggtggacatatctcgacgtactcgtcgctagctacgttgctggag
gttgggttcaatcacttctttcatgcgaagtactccgtcggtgggcaggagcagccggga
gactttgtttactttcagggccatgcttcgccgggagtgtatgcgcgggcttatcttgaa
gggcgtttggatgacgagaggttgaagaactttaggcatgagctgagagagacgccgggg
ttgagctcgtatccgcacccgtggctgatgccgaacttctggaacttccctacggtatcg
atggggatcggacctttgaatgcgatctatcaggcgcggtttatgcggtatctggagaac
cggaagttgattgagcagaccgaccgcagggtgtgggcgtttgtgggcgatggcgagacg
gatgaggttgacagccttggtgcgatctcggtggccgctcgcgagaagctggataatttg
atcttcgtcgtcaattgcaatttacaaaggcttgacggcccggtgcgtgggaacaagcgg
atcatcgatgagttggagggcgtcttccgcggagctgggtggaacgtcatcaaggtgatc
tggggttcggattgggatgcgttgtttgagcgcgaccacaccggattgctactgcggcgg
atggaagagtgcgtcgatggcgagtaccagaccttcaaggcgaagggcggggcttacctg
cgcgagcacttcttcgggaagtatccggagctgcttgagttggtgaaggatatgtccgat
gagcagcttggtttattgcatcgcggtggccatgaccggacgaagatctacaacgcttat
aagcgcgcggtggagcacaagggcggcccgaccgtgattctggcgaagaccgtgaagggg
catggattgggctcggcgcaaagcagaaacgcgacacactcggagaagaagctggccgat
gatgggctggcggcgtttgtgaagcggtttgagattccgattccggaggaggcggcgaag
tcgggtacgccgtatcggccggcgcaggactctcccgagattgtttacatgcaggagcgc
cgcaaggaactcggtggatatctgccgacgcgtgaggtgccgaagatcaacttcaaggct
ccggggctggagtactttggcgagtggacggcgggctcgaacaagcgtgccgtgtcgacg
acgatgggcttcgtgagcatactgcgacacctgatgaaggacccggcgattggcaagttg
attgtgccgattgtgccggatgagggcagaacgtttgggctggagtcggcgattcggcag
gtgggaatctatgcgccggaggggcagaagtacagcccgcatgatgcggatatgctgctc
tactaccgagaggataaggatgggcagattctggaggaggggattacggaggcggggtcg
atggcctcgtttaccgcggcgggcacggcgtatgtgaactacaaggtgccggcaattccg
ttctacatgtactactcgatgtttggatttcagcgcatcggggatatggtgtgggcgttt
gcggactcgcgcggcaagggctttttgatgggcggtacggctgggcggacaacgatgctt
ggcgaagggttgcagcatcaggatgggcacagcatcgtgctcgcgagcacggtgccgacc
tgcgtgacgtatgatccggcgtttgtgtatgagctggcagtggtgattcaggatggcatc
aggcgaatgtatgagaagggggaggactgcttctactacatcacgatgtacaacgaggat
tacgcgatgcccgcgatgccggagggttcggctgcgggtattctgcgcgggatctacaag
ctgaagccggctgccggtgaggcgacggtgcagttgtttggcagcgggccgattctgaat
gaggtgctgcgagcgcaggagattcttgcttcgaagtacaacgtgcatgccgatgtctgg
agcgtgaccagctatacggagttgcggcgggatgcgctggcggtggagcgatggaatcgg
ctgcatccggcggagaaggagaaggtgccgtatgtgctgcaggcactggggagctcggct
gggccgattattgctacgagcgactacatgaagtcggtgccggatctgttgtcgccgtgg
ctgccttctcggctggtgacgctggggactgatgggttcgggcgaagcgataaccgcgag
catctgcggcgacactttgaagtgagtgctgaggcgatcgttggagctacgctgtcgaag
ctcgctcgcgatggcaagttcaaaccgaaggcggcgcagaaggcgttggctgagctgggg
ctggatgtcgaagcggttgatccggcgcgtgcctag
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