KEGG   Alistipes ihumii: NQ491_05275
Entry
NQ491_05275       CDS       T08511                                 
Name
(GenBank) transketolase
  KO
K00615  transketolase [EC:2.2.1.1]
Organism
aiu  Alistipes ihumii
Pathway
aiu00030  Pentose phosphate pathway
aiu00710  Carbon fixation by Calvin cycle
aiu01100  Metabolic pathways
aiu01110  Biosynthesis of secondary metabolites
aiu01120  Microbial metabolism in diverse environments
aiu01200  Carbon metabolism
aiu01230  Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:aiu00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00030 Pentose phosphate pathway
    NQ491_05275
  09102 Energy metabolism
   00710 Carbon fixation by Calvin cycle
    NQ491_05275
  09109 Metabolism of terpenoids and polyketides
   01051 Biosynthesis of ansamycins
    NQ491_05275
Enzymes [BR:aiu01000]
 2. Transferases
  2.2  Transferring aldehyde or ketonic groups
   2.2.1  Transketolases and transaldolases
    2.2.1.1  transketolase
     NQ491_05275
SSDB
Motif
Pfam: Transketolase_N Transket_pyr Transketolase_C_1 Transketolase_C TPP_enzyme_C E1_dh
Other DBs
NCBI-ProteinID: UWN58184
LinkDB
Position
complement(1311546..1313576)
AA seq 676 aa
MKDLTTKAADNIRILAASMVEKAKSGHPGGAMGGADFVNILYSEFLRYNPDDSRYPFRDR
FFLDPGHMSPMLYSVLALAGYFNMDELAAFRQWGSPTPGHPEVDLDRGIENTSGPLGQGH
AMALGAAIAERFLVARFGDWMAHKTYAFISDGGIQEEVSQGVGRIAGHLGLSNLIMFYDS
NNIQLSTKVEEVSTEDIVAKYEAWGWSVISIDGNDPAEIRQALSRAVAETEKPTLIVGHT
LMGKGAVGKEGEDFSNKVSTHGQPLSAAGGDIAKTVAALGGDPENPFVIFDDVKELYARR
REELKKWYALRREEESIWRAANKEQAAELDLFLSGKTPAIDYSQINCGDNVATRAASAAV
LSYLAEHVQNMVVASADLSNSDKTDGFLKKTHAMRKGDFTGRFLQPGVAEFTMACIMNGM
ALHGGVIPACGTFFVFSDYMKPVLRLAALQRLPVKYVWTHDSFRVGEDGPTHQPIEHEAQ
LRLMEQLRNHRGERSVVVLRPADSYETVAAWKVAMENERPTALVLSRQNIKNLPAASGDR
RKEAMQLVKGAYVVMDCEGTPDVILLASGSEVATLVDGAEKLKADGVKVRVVSVPSEGLF
RDQSKEYQQSVLPCGVPKFGLTSGLPVTLAGLVGCDGEIAGLDHFGYSAPAGVLDKEFGF
SGEKVYEKVKAMLAKK
NT seq 2031 nt   +upstreamnt  +downstreamnt
atgaaagacttaacaacaaaggctgcggacaatatccggattctcgcagcgtcgatggtg
gagaaagccaagtcgggccatcccggcggagcgatgggcggagccgatttcgtgaacatt
ctctactccgagttcctgcggtacaatcccgacgactcgcgctatccgttccgcgaccgc
ttcttcctcgatcccggccatatgtcgccgatgctctattccgtactggctttggccggc
tatttcaatatggatgagttggcggcgttccggcagtggggcagcccgacgccgggtcat
cccgaggtcgatctcgaccgcggaatcgagaatacctcgggcccgctggggcagggccat
gcgatggctttgggtgcggcgatcgccgagcgttttctcgtagctcgcttcggcgactgg
atggcgcacaagacctacgcgttcatctccgacggcggtattcaggaagaggtttctcag
ggcgtcggccgcatcgccgggcatctcgggttgagcaacctgatcatgttctacgactcg
aacaatatccagctttcgaccaaggtcgaggaggtttcgaccgaggatatcgtggccaag
tacgaggcttggggctggagcgtcatcagtatcgacggcaacgatcccgccgaaatccgt
caggctctctcccgcgcggtggcggagaccgaaaagcctacgctgatcgtcggccatacg
ctgatgggcaagggcgccgtcggcaaggagggcgaggatttctcgaacaaggtttccacg
catggacagcctctgtcggccgcgggcggcgacattgccaagacggtggccgcgctgggc
ggcgatccggagaatccgttcgtgattttcgacgacgtgaaggaactgtatgcgcgtcgc
cgcgaggaactgaaaaaatggtacgcgctgcgccgcgaggaagagtcgatctggcgcgct
gccaataaggagcaggccgccgagctcgacctgttcctgtcgggcaagacgccggcgatc
gactactcgcagatcaattgcggcgacaacgtggctacgcgcgccgcttcggccgccgtg
ctctcttatttggccgagcatgtgcagaacatggtcgtcgcttcggccgacctgagcaac
tcggacaagaccgacggtttcctgaagaagacccatgcgatgcgcaagggcgatttcacc
ggccgcttcctgcagccgggcgtggccgagttcacgatggcctgcatcatgaacggaatg
gcgcttcacggaggcgtgattccggcttgcgggactttcttcgtcttctccgattacatg
aagcccgtactgcgtctggctgctttgcagcgtctgccggtcaagtacgtctggacgcac
gactcgttccgcgtgggcgaggacggtccgacgcatcagccgatcgaacacgaggctcag
cttcgcctgatggagcagttgcgcaaccatcgcggcgagcgttcggtcgtcgtgctgcgt
cctgccgatagctacgagacggtagccgcatggaaggtcgctatggaaaacgagcgtccg
acggctctcgtactgtcgcgtcagaatatcaagaacctgccggccgccagcggcgaccgc
cgcaaggaggcgatgcagctcgtcaaaggagcttatgtcgttatggattgcgagggtact
cccgacgtgatcctgcttgcaagcggctcggaagtggcgacgcttgtggacggtgccgaa
aagctgaaggccgacggcgtgaaagtccgcgtcgtgtcggttccgtcggaaggtctgttc
cgcgaccagagcaaggaataccagcagagcgtgctgccctgcggcgtacccaagttcggt
ctgacctcgggcctgcccgtgacgctggccggtctggtcggctgcgacggcgagatcgcc
ggactcgaccatttcggatactcggctccggccggcgtgctcgacaaggagttcggtttc
tcgggcgagaaggtatacgagaaagtgaaggccatgctggccaagaaatag

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