Caldimonas aquatica: OMP39_00655
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Entry
OMP39_00655 CDS
T08587
Symbol
rfbA
Name
(GenBank) glucose-1-phosphate thymidylyltransferase RfbA
KO
K00973
glucose-1-phosphate thymidylyltransferase [EC:
2.7.7.24
]
Organism
saqa
Caldimonas aquatica
Pathway
saqa00520
Amino sugar and nucleotide sugar metabolism
saqa00521
Streptomycin biosynthesis
saqa00523
Polyketide sugar unit biosynthesis
saqa00525
Acarbose and validamycin biosynthesis
saqa00541
Biosynthesis of various nucleotide sugars
saqa01100
Metabolic pathways
saqa01110
Biosynthesis of secondary metabolites
saqa01250
Biosynthesis of nucleotide sugars
Module
saqa_M00793
dTDP-L-Rha biosynthesis, Glc-1P => dTDP-L-Rha
Brite
KEGG Orthology (KO) [BR:
saqa00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00520 Amino sugar and nucleotide sugar metabolism
OMP39_00655 (rfbA)
00541 Biosynthesis of various nucleotide sugars
OMP39_00655 (rfbA)
09109 Metabolism of terpenoids and polyketides
00523 Polyketide sugar unit biosynthesis
OMP39_00655 (rfbA)
09110 Biosynthesis of other secondary metabolites
00521 Streptomycin biosynthesis
OMP39_00655 (rfbA)
00525 Acarbose and validamycin biosynthesis
OMP39_00655 (rfbA)
Enzymes [BR:
saqa01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.7 Nucleotidyltransferases
2.7.7.24 glucose-1-phosphate thymidylyltransferase
OMP39_00655 (rfbA)
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Motif
Pfam:
NTP_transferase
NTP_transf_3
IspD
Motif
Other DBs
NCBI-ProteinID:
UZD55141
UniProt:
A0ABY6MT06
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Position
141262..142149
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AA seq
295 aa
AA seq
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MTTRKGIILAGGSGTRLHPMTLAVSKQLLPVYDKPMVYYPLATLMLAGIREILLISTPQD
TPRFEQLLGDGSAWGLSLQYAVQPRPEGLAQAFLIGERFLAGAPSALVLGDNIFYGHDWV
SRLRAAAARPTGATVFAYPVQDPQRYGVVEWDADGRVVGLEEKPARPRSRYAVTGLYFYD
GQAPQLAGRLRPSARGELEITDLNRAYLGQGQLTVVPLGRGDAWLDTGTPDALLEASHFI
QTLERRQGLKICCPEEIAWRQGWITDEQLRRLAQPLVASGYGEYLLRILHDSVWT
NT seq
888 nt
NT seq
+upstream
nt +downstream
nt
atgacaacacgcaagggcatcatcctcgccggcggctccggcacgcggctgcatccgatg
acgctggcggtcagcaagcaactgctgccggtgtacgacaagccgatggtgtactacccg
ctggccacgctcatgctggccggcatccgcgagatcctgctcatctccaccccgcaagac
acgccgcgcttcgagcagctgctgggcgacggcagtgcctggggcttgtcgttgcaatac
gcggtgcagccaaggccggagggcctggcgcaggcctttctgatcggcgagcgcttcctg
gccggcgcgcccagcgcgttggtgctgggggacaacatcttctacgggcatgactgggtt
tctcgcttgcgcgcggccgcggcgcgacccacgggggccacggtctttgcctacccggtg
caggacccgcagcgctacggcgtggtggagtgggacgccgacggccgcgtggtggggctg
gaggagaagcccgcccggccgcgcagccgctacgccgtcacggggttgtacttctacgat
ggccaagctccgcaactggcgggccggctgcgccccagtgcgcgcggcgagctggagatc
accgacctcaaccgtgcctatctcggccaggggcagttgaccgtggtgcccttaggccgg
ggcgacgcctggctcgacaccggcacgcccgacgctttgctggaggcgagccacttcatc
cagacgctggaacgacgccagggcttgaagatctgctgcccggaggagatcgcgtggcgc
cagggctggatcacggacgagcaattgcgccgactggcgcagccgctggtggccagcggc
tacggcgagtaccttctgcgcatcctgcacgactcggtgtggacgtga
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