KEGG   Leisingera aquaemixtae: R2C4_00045
Entry
R2C4_00045        CDS       T06085                                 
Name
(GenBank) glucokinase
  KO
K00845  glucokinase [EC:2.7.1.2]
Organism
laqu  Leisingera aquaemixtae
Pathway
laqu00010  Glycolysis / Gluconeogenesis
laqu00052  Galactose metabolism
laqu00500  Starch and sucrose metabolism
laqu00520  Amino sugar and nucleotide sugar metabolism
laqu00521  Streptomycin biosynthesis
laqu01100  Metabolic pathways
laqu01110  Biosynthesis of secondary metabolites
laqu01120  Microbial metabolism in diverse environments
laqu01200  Carbon metabolism
laqu01250  Biosynthesis of nucleotide sugars
Module
laqu_M00001  Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
laqu_M00549  Nucleotide sugar biosynthesis, glucose => UDP-glucose
laqu_M00909  UDP-N-acetyl-D-glucosamine biosynthesis, prokaryotes, glucose => UDP-GlcNAc
Brite
KEGG Orthology (KO) [BR:laqu00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    R2C4_00045
   00052 Galactose metabolism
    R2C4_00045
   00500 Starch and sucrose metabolism
    R2C4_00045
   00520 Amino sugar and nucleotide sugar metabolism
    R2C4_00045
  09110 Biosynthesis of other secondary metabolites
   00521 Streptomycin biosynthesis
    R2C4_00045
   00524 Neomycin, kanamycin and gentamicin biosynthesis
    R2C4_00045
Enzymes [BR:laqu01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.1  Phosphotransferases with an alcohol group as acceptor
    2.7.1.2  glucokinase
     R2C4_00045
SSDB
Motif
Pfam: Glucokinase DUF412
Other DBs
NCBI-ProteinID: QDI74219
LinkDB
Position
unnamed8:complement(7466..8353)
AA seq 295 aa
MTRLRLAADAGGTNTRLGLARDGVLLADTVQSFRNDAHSGFAEVMDQYLQNAAPGGVAEV
VIAIAGPVTGTTARLTNRDWHFDAAALSRHLNGARVHLLNDLAALGQACPHLGADCLDTV
IAPADDAGGDGQRLVAGIGTGFNLSPVLHAGGRVQCLNVEYGHVSLPLDVAEHLSSRTGD
AGAFRTVEHLFSGRGYAAVRAQFPEDTAGTQAFQGFYAELLSLLARNLVLAFLPAQGIYF
AGAVARSLLASPARQVFAEAFRQPFALDTGIEAPVYVILDDAAALKGCAAVTVNR
NT seq 888 nt   +upstreamnt  +downstreamnt
ttgacccggctgcggcttgccgcggacgccggcggcacaaatacgcggctggggctggcg
cgggacggcgtcctgctggcggacacggtgcaaagctttcgcaacgatgcccattcgggc
tttgcggaggtgatggaccagtacctgcaaaacgccgcgcccggcggtgtggcggaggtg
gtgattgccattgccgggccggtcaccggcaccaccgcgcggctcaccaaccgggactgg
catttcgacgccgcggcgctgtcgcggcatctgaatggcgcgcgcgtgcatctgctcaat
gacctcgcagcgctggggcaggcgtgcccgcatctgggggcagactgcctggatacggtg
atcgcgcccgcggatgatgcaggcggagacggccagcggctggtggcgggcatcggcacc
ggcttcaacctgtcgccggtgctgcacgcgggcgggcgggtgcaatgcctgaacgtggaa
tacggccacgtcagcctgccgctggacgtggcggagcatctgagcagccggaccggcgac
gccggggcgttccgcacggtggagcatctgttctccggccgcgggtatgcggcggtgcgg
gcgcagttcccggaggataccgccggcacgcaggcgtttcagggcttttatgcggagttg
ctgtcgctgctggcgcgcaacttggtgctggcgtttctgcccgcgcaggggatctatttc
gcgggtgcggtggcgcgcagcctgctggcctccccggcgcggcaggtgtttgcggaggcc
ttccgccagcctttcgccctcgataccgggatagaggcgccggtgtatgtcatcctcgac
gacgcggcggccctgaagggctgcgccgccgttacggtcaaccgctga

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