KEGG   Aquiluna borgnonia: HRU87_03790
Entry
HRU87_03790       CDS       T06624                                 
Name
(GenBank) triose-phosphate isomerase
  KO
K01803  triosephosphate isomerase (TIM) [EC:5.3.1.1]
Organism
aqg  Aquiluna borgnonia
Pathway
aqg00010  Glycolysis / Gluconeogenesis
aqg00051  Fructose and mannose metabolism
aqg00562  Inositol phosphate metabolism
aqg00710  Carbon fixation by Calvin cycle
aqg01100  Metabolic pathways
aqg01110  Biosynthesis of secondary metabolites
aqg01120  Microbial metabolism in diverse environments
aqg01200  Carbon metabolism
aqg01230  Biosynthesis of amino acids
Module
aqg_M00002  Glycolysis, core module involving three-carbon compounds
Brite
KEGG Orthology (KO) [BR:aqg00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    HRU87_03790
   00051 Fructose and mannose metabolism
    HRU87_03790
   00562 Inositol phosphate metabolism
    HRU87_03790
  09102 Energy metabolism
   00710 Carbon fixation by Calvin cycle
    HRU87_03790
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:aqg04147]
    HRU87_03790
Enzymes [BR:aqg01000]
 5. Isomerases
  5.3  Intramolecular oxidoreductases
   5.3.1  Interconverting aldoses and ketoses, and related compounds
    5.3.1.1  triose-phosphate isomerase
     HRU87_03790
Exosome [BR:aqg04147]
 Exosomal proteins
  Exosomal proteins of colorectal cancer cells
   HRU87_03790
  Exosomal proteins of bladder cancer cells
   HRU87_03790
  Exosomal proteins of melanoma cells
   HRU87_03790
SSDB
Motif
Pfam: TIM
Other DBs
NCBI-ProteinID: QKJ25311
UniProt: A0A7D4TJ28
LinkDB
Position
739722..740504
AA seq 260 aa
MTKRIPLIAGNWKMNLDHLQAIALVQKLSWTLSDAGHEYSSAEVAVFPPFTDLRSVQTLI
EAEKFEVVLGAQDLSKHDSGAFTGEISGAFLSKLGCKFVLIGHSERRQYHSETDETVQAK
VAAAWKHGLVPIICVGETLEELETQGQAAVPVAQTIAALSGHETLGEFVIAYEPVWAIGT
GKVATPLEAESVAKAIRAAITENFGAESGQSRILYGGSVKANNVAGFLASGEVDGVLVGG
ASLDAEEFAGIARFQKHIVL
NT seq 783 nt   +upstreamnt  +downstreamnt
atgactaagcggattccgctaattgctggcaactggaagatgaacctagaccatctgcag
gctatcgctctggtccagaaacttagctggactctgagtgatgcaggccacgaatacagt
tcggctgaggttgcggtctttccaccgttcactgacctcagaagtgttcagactctgatt
gaagctgagaagtttgaggttgtcctgggtgcccaggatttgtcaaagcatgattctgga
gcctttacgggggagatctcgggcgccttcctatcaaagttgggttgcaagttcgtcctc
attggtcacagtgagcgcaggcagtatcactcggaaactgatgagacggtccaggctaag
gtagcggcagcttggaaacacggtctggtgccaatcatttgcgttggggagactctcgaa
gagctcgagacccagggtcaagctgcggtcccagtagctcagaccatcgctgcactttct
ggacacgaaacccttggcgagtttgtaattgcctacgagccggtgtgggctatcgggacc
ggtaaggtagcgaccccgctcgaggcagagagcgttgcaaaggcaattcgagctgcaatc
accgagaacttcggtgccgagagtggacagagcagaattctctacggcggatcagtcaaa
gccaacaacgtcgcaggcttcctcgcctccggtgaagttgatggggttctggtcggtgga
gcaagcctggatgccgaggaatttgctggcatcgcgcgctttcagaagcacatagttcta
taa

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