Pseudoxanthomonas suwonensis J1: WQ53_06800
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Entry
WQ53_06800 CDS
T04241
Name
(GenBank) glucokinase
KO
K00845
glucokinase [EC:
2.7.1.2
]
Organism
psuw
Pseudoxanthomonas suwonensis J1
Pathway
psuw00010
Glycolysis / Gluconeogenesis
psuw00052
Galactose metabolism
psuw00500
Starch and sucrose metabolism
psuw00520
Amino sugar and nucleotide sugar metabolism
psuw00521
Streptomycin biosynthesis
psuw01100
Metabolic pathways
psuw01110
Biosynthesis of secondary metabolites
psuw01120
Microbial metabolism in diverse environments
psuw01200
Carbon metabolism
psuw01250
Biosynthesis of nucleotide sugars
Module
psuw_M00001
Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
psuw_M00549
Nucleotide sugar biosynthesis, glucose => UDP-glucose
psuw_M00909
UDP-N-acetyl-D-glucosamine biosynthesis, prokaryotes, glucose => UDP-GlcNAc
Brite
KEGG Orthology (KO) [BR:
psuw00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
WQ53_06800
00052 Galactose metabolism
WQ53_06800
00500 Starch and sucrose metabolism
WQ53_06800
00520 Amino sugar and nucleotide sugar metabolism
WQ53_06800
09110 Biosynthesis of other secondary metabolites
00521 Streptomycin biosynthesis
WQ53_06800
00524 Neomycin, kanamycin and gentamicin biosynthesis
WQ53_06800
Enzymes [BR:
psuw01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.2 glucokinase
WQ53_06800
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Motif
Pfam:
Glucokinase
Motif
Other DBs
NCBI-ProteinID:
AKC86519
UniProt:
A0A0E3Z130
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Position
1610325..1611356
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AA seq
343 aa
AA seq
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MSAAANATPLPGRLSQPFVAADVGGTHVRIGLVQAGIDAGAPLQVLAYSKFRCADYASLA
DILREFIAGLADARGAAARVAVIASAGYPLADGTVITANLPWRLSPAEIRDSLGLDAVHL
VNDFEAVAHAVAHLGGSEVLQLAGPERIAPGPILVLGPGTGLGAAVWIPTGSGPVVLATE
AGQAALSVGTELEMALLRQMLEQRSHVPVEHALSGPGLINLYNALCAVRGVAPVFARPGD
VTAAALDGSDALARESLEAFCGLLGSTVGDMALLYGVQGVYLAGGILPHIREFLVRSDFV
ARFLNKGPMREALERVSVRLVEHGQLGVVGAASWYLGSGFTGK
NT seq
1032 nt
NT seq
+upstream
nt +downstream
nt
gtgtcagcagccgcaaatgccacacctctgccgggccgactgtcgcagccgttcgtggcg
gccgacgtcggcggcacccatgtccgcatcggcctggtccaggccggcatcgatgccggc
gcaccgctgcaggtgctggcgtacagcaagttccgctgcgccgactacgccagcctggcc
gacatcctcagggagttcatcgccggtcttgccgatgcccgtggcgcggcggcgcgggtg
gcggtgatcgccagcgccggctacccgctggccgacggcaccgtgatcaccgccaacctg
ccctggcggctgtcgccggccgagatccgcgacagcctgggcctggacgcggtgcacctg
gtcaacgatttcgaggccgtggcccatgcggtcgcccacttgggcggcagcgaggtgctg
cagctggccggtccggagcgcatcgcgcccggcccgatcctggtactgggcccgggcacc
ggcctgggcgccgcggtgtggatccccaccggcagcggcccggtggtgctggccaccgag
gccgggcaggccgcgctgtcggtcggcaccgaactggagatggcgctgctgcggcagatg
ctcgagcagcgcagccacgtcccggtcgagcacgcgctgtccgggccaggcctgatcaac
ctctacaacgcactgtgcgccgtacgtggcgtcgcgcccgtcttcgccaggcccggcgac
gtcaccgccgcggcgctggacggcagcgacgcgctggcgcgcgaaagcctggaagcgttc
tgcggcctgctcggcagcacggtcggcgacatggcgctgctgtacggcgtgcagggcgtc
tacctggccggcgggatcctgccgcacatccgcgagttcctcgtccgcagcgatttcgtc
gcccggttcctcaacaagggaccgatgcgcgaggcgctggagcgggtgtcggtgcgcctg
gtcgaacacggacagctgggtgtggtcggcgccgccagctggtacctgggttccggtttt
acggggaagtga
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