Helicobacter pylori OK310: HPOK310_0364
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Entry
HPOK310_0364 CDS
T02542
Symbol
tktA
Name
(GenBank) transketolase
KO
K00615
transketolase [EC:
2.2.1.1
]
Organism
hpyl
Helicobacter pylori OK310
Pathway
hpyl00030
Pentose phosphate pathway
hpyl00710
Carbon fixation by Calvin cycle
hpyl01100
Metabolic pathways
hpyl01110
Biosynthesis of secondary metabolites
hpyl01120
Microbial metabolism in diverse environments
hpyl01200
Carbon metabolism
hpyl01230
Biosynthesis of amino acids
Module
hpyl_M00007
Pentose phosphate pathway, non-oxidative phase, fructose 6P => ribose 5P
Brite
KEGG Orthology (KO) [BR:
hpyl00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00030 Pentose phosphate pathway
HPOK310_0364 (tktA)
09102 Energy metabolism
00710 Carbon fixation by Calvin cycle
HPOK310_0364 (tktA)
09109 Metabolism of terpenoids and polyketides
01051 Biosynthesis of ansamycins
HPOK310_0364 (tktA)
Enzymes [BR:
hpyl01000
]
2. Transferases
2.2 Transferring aldehyde or ketonic groups
2.2.1 Transketolases and transaldolases
2.2.1.1 transketolase
HPOK310_0364 (tktA)
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Transketolase_N
Transket_pyr
Transketolase_C_1
DXP_synthase_N
Transketolase_C
E1_dh
TPP_enzyme_C
ThiN
Motif
Other DBs
NCBI-ProteinID:
BAM97792
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Position
complement(375415..377340)
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AA seq
641 aa
AA seq
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MRLSNADLERLKSMANTLRFLCADMIDRANSGHPGVCLGLADVMVVLSLHLNLNPTNPKW
LNRDRLVFSGGHASALAYSLLHLWGFDLSLEDLKRFRQLHSKTPGHPELHHTEGIEITTG
PLGQGFANAVGFSMASQYAQNLLDKEAISHKVYCLCGDGDLQEGISYESASLAGHLNLNN
LIVIYDSNQISIEGAINISFSEQVKMRFLAQNWEVLECDGHDYQAIHNALEEAKKSTKPT
LLIAHTIIGKGAIGLEGSEKTHGSPLNKEVLRQSKENAQINPNESFIISPKSKMHFEEVK
VRGVSLEALWEKSLSPKAKEKIHALKDFDFSAINYPVFKKGESLATRVSNGMILNAIAKE
CEGFLGGSADLAPSNNTQLKHSGDFPLGQNLHFGIREHAMGAITNALAAYGLFVPFCATF
FVFSDYLMPSIRLSALMKLKALFIFTHDSIGVGEDGATHQPIEQLSHLRALPNFYAFRPS
DAFENTACMQIALSLSAPSGLILSRQNLPVLDEVSKEQVLKGAYVKYDAKNPVITLVASG
SEVSLALESAKMLERENIPTQVVSVPCFDLLVEQDESYLKELFKGKVLVIEASRAIEWYR
FADKIIGMDSFGSSAKGDKLFEKFGFSVENITTQAKRLLNA
NT seq
1926 nt
NT seq
+upstream
nt +downstream
nt
atgcgattgagtaacgctgacttagaacgattaaaaagcatggccaacacgctgcgcttt
ttgtgtgcggacatgatagatagggctaatagtgggcatccgggcgtgtgcttgggatta
gccgatgtgatggtggttttaagcttgcacttaaacctaaaccccactaaccctaaatgg
ctcaatagagataggctggtttttagcggagggcatgcgagcgcgttagcgtatagtttg
ttgcatttgtggggttttgatttgagcctagaagatttaaagcgtttcaggcaattacac
tctaaaaccccaggacaccccgaattgcaccacaccgaaggcattgagatcacgactggg
cctttggggcaaggttttgctaacgctgtgggctttagcatggcgagccaatacgctcaa
aaccttttagacaaagaagccatttctcataaagtctattgtttgtgtggggatggggat
ttgcaagaaggcattagttatgagagcgcttctttagcagggcacctcaacctgaacaac
ctcattgtgatttatgacagcaaccagatcagcattgaaggcgctatcaatattagtttt
agcgaacaggtcaagatgcggtttttagcgcaaaattgggaagtgctagaatgcgatggg
catgactatcaagcgattcataacgctttagaagaagccaaaaaatccaccaaacccacg
cttttaatcgctcatacgattattggtaagggggctattggcttagaggggagtgaaaaa
acgcatggctcacccctaaataaagaagtgttaagacaatccaaagaaaacgctcaaatc
aatcctaatgaaagctttatcattagcccaaaaagcaaaatgcattttgaagaagtgaaa
gttaggggcgttagtttagaagctttatgggaaaaatccttaagccctaaagcaaaagaa
aagatccatgcgttgaaggattttgattttagcgccatcaattaccccgttttcaaaaaa
ggcgaatctctagccacgagagtgagtaacggcatgattttaaacgctatcgctaaagaa
tgcgagggctttttaggggggagcgcggatttagccccatccaataatacgcaattaaaa
cactctggcgatttccctttagggcaaaacttgcattttgggatcagagagcatgccatg
ggggctatcactaacgctttagcggcgtatggcttgtttgtgcctttttgcgcgaccttt
tttgtgtttagcgattacttgatgcctagcattcgtttgagtgctttaatgaaactaaaa
gccctttttatttttacgcatgacagcattggcgtgggcgaagacggggccacgcaccaa
cccatagagcaattgagccatttgcgtgctttgcccaatttctacgctttcagacctagc
gatgcttttgaaaataccgcttgcatgcaaatagcgttaagtttgagcgctcctagcggg
cttattttatcgcgccagaatttacccgtgcttgatgaggtttctaaagagcaggtttta
aaaggcgcgtatgttaaatatgatgctaaaaatcccgttatcacgctcgttgcgagcggg
agcgaagtttccttggctttagagagtgctaaaatgttagaacgagaaaatatccccact
caagtggtgagcgtgccatgctttgatttattggtggaacaagatgaaagctatcttaaa
gagctttttaagggtaaagttttagtgattgaagcgagtcgcgcgatagagtggtatcgt
tttgcggataaaatcattggcatggattcttttgggagttcagcaaagggcgataaactc
tttgaaaaattcggcttcagcgttgaaaacatcaccactcaagctaaaaggttactcaac
gcatga
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