Thermogutta terrifontis: THTE_0645
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Entry
THTE_0645 CDS
T05034
Name
(GenBank) Transketolase
KO
K00615
transketolase [EC:
2.2.1.1
]
Organism
ttf
Thermogutta terrifontis
Pathway
ttf00030
Pentose phosphate pathway
ttf00710
Carbon fixation by Calvin cycle
ttf01100
Metabolic pathways
ttf01110
Biosynthesis of secondary metabolites
ttf01120
Microbial metabolism in diverse environments
ttf01200
Carbon metabolism
ttf01230
Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:
ttf00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00030 Pentose phosphate pathway
THTE_0645
09102 Energy metabolism
00710 Carbon fixation by Calvin cycle
THTE_0645
09109 Metabolism of terpenoids and polyketides
01051 Biosynthesis of ansamycins
THTE_0645
Enzymes [BR:
ttf01000
]
2. Transferases
2.2 Transferring aldehyde or ketonic groups
2.2.1 Transketolases and transaldolases
2.2.1.1 transketolase
THTE_0645
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
Transketolase_N
Transket_pyr
Transketolase_C_1
Transketolase_C
DUF498
Scm3
Motif
Other DBs
NCBI-ProteinID:
ASV73247
UniProt:
A0A286RBD2
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All DBs
Position
619372..621438
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AA seq
688 aa
AA seq
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MAEPHTCSIEQLAINTIRTLSMDAVEAAKSGHPGTPMALAPVGYVIFNEILRYDPTHPLW
VNRDRFVLSCGHASMLLYSLLHLAQVQQVDENGRPTGELAVPLEHIRQFRQLHSRCPGHP
EYRHTSGVEVTTGPLGQGVGTSVGMAIAGKWLAARYNRPGFDLFNYGIYVLCSDGDLMEG
ISSEAASLAGHLKLGNLCWIYDDNQITIEGHTSLAFSEDVATRFQAYGWDVYRVGDVNDL
DSLRNALKRFNPAGERPTLIIVKSIIAWGAPNKQNTHEAHGAPLGEEEIRLTKQFYGWPV
DAKFLVPPEVLEHFRQGIGTRGPQFREQWESLFAKYAQSYPQEAEEIRKITSGELPEAWD
RDIPTFPADAKGLATRASSGKVLNAVAKRIPWMIGGSADLAPSNNTLLTFPEAGHFAANN
YAGRNLHYGIREHAMGAISNGLALCGLRPYAGTFLVFSDYMRPAIRLAALMELPVLHIFT
HDSIGVGEDGPTHQPVEHVAALRAIPHLVVIRPADANEVAEAYRVALRMRRNPVALILTR
QNLPTLDRSQYASAAGLACGAYILAEASKLPPDVILIGTGSEVAVCLAARELLAQDGIAA
RVVSMPSWELFESQPEEYRRSVLPPEVAARVAVEAGIAQGWERYLGPKGIFVGMKGFGAS
APAGVLMKHFGITPENVAAAAKKSLGQA
NT seq
2067 nt
NT seq
+upstream
nt +downstream
nt
atggcggaaccccacacctgttcaatcgagcaactcgcaatcaacaccattcgaacgctc
tccatggatgccgtggaagcggccaagagcggccatcctggcaccccgatggcactggcc
ccggttgggtatgtcatcttcaacgaaattcttcgttatgatcccacgcatcccctgtgg
gtcaatcgggacagattcgtcctatcttgcgggcacgcctcgatgcttctttactcgctg
ctgcacctggcgcaggtccagcaggtggatgagaatggcagacccaccggggagttggcg
gtgcctctggaacacatccggcaattccggcagcttcacagtcgttgtccgggccacccg
gagtaccggcatacctccggcgttgaagtgactaccggtccgcttggtcagggcgtgggg
acgagtgtgggcatggccatcgccggaaaatggcttgccgcacgctacaaccgaccgggc
ttcgatctatttaattacggcatctatgtgctctgcagcgatggcgacctgatggagggc
atctccagcgaagcggcttcactggccggtcatcttaagctgggaaatctctgctggatt
tacgacgacaaccagatcaccatcgaaggccacacgtcgctggcgttcagtgaagacgtc
gccacgcgttttcaagcttacggctgggatgtgtaccgcgtgggcgacgtcaacgatctt
gatagcctgcggaatgctctcaagcggttcaatcctgcaggtgagcggcccacgcttatc
atcgtcaagagcattatcgcctggggagcgcccaataagcagaacactcacgaggcccac
ggggctccgctcggcgaggaagaaattcggttgaccaagcaattttacggctggccggtg
gacgccaaatttcttgtaccgccggaagtgttggagcatttccgtcagggaattggcacg
cgggggccgcagttccgggagcagtgggagtcacttttcgcaaaatacgctcaaagctat
ccccaagaggccgaggaaatccgaaagatcacgagcggagagcttcctgaggcttgggat
cgcgacatccccacgtttcccgctgatgctaaaggtctggccacccgagcgtcctccggg
aaggtcctcaacgccgtcgccaagcgcatcccgtggatgatcggtggttcggccgacctg
gcgccatccaataacacgctcctcacattcccggaggcaggtcatttcgccgcgaacaat
tacgccgggcggaatcttcattatggaatccgggagcacgcgatgggagcgatcagcaac
ggtctggccctctgtgggcttcgcccttatgcagggacctttctggttttcagcgattac
atgcggccggcgatccgtctggctgccctgatggaattgcctgttctgcacatcttcact
cacgattcgatcggggtgggcgaggatggcccgacgcatcaaccggttgagcatgtggcg
gctttgcgggcgattcctcatctggtggtcattcgccccgccgatgccaacgaagtggca
gaagcctaccgtgtggcgctgcggatgcgtcgtaatccggtcgccctcattctgacgcgg
caaaacctgcccacgctggatcggagtcaatacgcctcggcagccggactggcatgcggg
gcgtacattctggccgaagcttccaagttgccaccggatgtgattctcatcggaacggga
agcgaagtggctgtatgcctggctgcccgcgagctacttgcccaggacgggattgccgcc
cgagtcgtgagcatgccgagttgggaactcttcgaaagccagccggaagagtaccgcagg
tctgtcctgccgccggaagtggcggcacgggtggccgtggaggccggcatcgcgcaggga
tgggagcgctatctcgggccgaaggggatctttgtaggaatgaaaggttttggggcctcc
gctcccgccggagtgctcatgaaacacttcggaatcacgcccgaaaatgtcgcagcggcc
gccaaaaagtcgctcggccaggcgtga
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