KEGG   Bacteroides xylanisolvens: BXY_37610
Entry
BXY_37610         CDS       T02579                                 
Name
(GenBank) glucokinase
  KO
K25026  glucokinase [EC:2.7.1.2]
Organism
bxy  Bacteroides xylanisolvens
Pathway
bxy00010  Glycolysis / Gluconeogenesis
bxy00052  Galactose metabolism
bxy00500  Starch and sucrose metabolism
bxy00520  Amino sugar and nucleotide sugar metabolism
bxy00521  Streptomycin biosynthesis
bxy00524  Neomycin, kanamycin and gentamicin biosynthesis
bxy01100  Metabolic pathways
bxy01110  Biosynthesis of secondary metabolites
bxy01120  Microbial metabolism in diverse environments
bxy01200  Carbon metabolism
bxy01250  Biosynthesis of nucleotide sugars
Module
bxy_M00001  Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
Brite
KEGG Orthology (KO) [BR:bxy00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    BXY_37610
   00052 Galactose metabolism
    BXY_37610
   00500 Starch and sucrose metabolism
    BXY_37610
  09107 Glycan biosynthesis and metabolism
   00520 Amino sugar and nucleotide sugar metabolism
    BXY_37610
  09110 Biosynthesis of other secondary metabolites
   00521 Streptomycin biosynthesis
    BXY_37610
   00524 Neomycin, kanamycin and gentamicin biosynthesis
    BXY_37610
Enzymes [BR:bxy01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.1  Phosphotransferases with an alcohol group as acceptor
    2.7.1.2  glucokinase
     BXY_37610
SSDB
Motif
Pfam: ROK BcrAD_BadFG Hydant_A_N FGGY_N
Other DBs
NCBI-ProteinID: CBK68720
UniProt: D6D2R8
LinkDB
Position
complement(4694663..4695634)
AA seq 323 aa
MEKEYAIGIDLGGTSVKYALIDNEGVFYFQGKLPSKADVSAEAVIGQLVTAINEVKAFAQ
EKDYKIDGIGIGTPGIVDCTNRIVLGGAENINGWENIHLADRIETETGLPALLGNDANLM
GLGETMYGAGQGATHVVFLTVGTGIGGAVVIDGKLFNGYANRGTELGHVPLIANGEPCAC
GSVGCLEHYASTSALVRRFSQRIIDAGISYPNEEINGELIVRLYKQGDPIAKISLEEHCD
FLGHGIAGFINIFSPQKIVIGGGLSEAGDFYIQKVSEKARSYAIPDCAVNTQIIAAALGN
KAGSIGAASLVFTQLSAPNLIKL
NT seq 972 nt   +upstreamnt  +downstreamnt
atggagaaagaatacgctataggaattgaccttggcggaacttcagtaaaatacgccctt
attgataatgaaggcgtattttactttcaagggaagttaccgtcgaaagccgatgtatca
gcagaagctgtcatcggacagttggttactgctatcaatgaagtgaaagcctttgcacag
gaaaaagactacaaaattgatggtataggaatcggaacaccgggcattgtggattgtacg
aaccgtattgttttaggaggtgcggaaaatatcaacggctgggaaaacattcacttggca
gaccgcattgaaacggaaaccggacttccggctttattgggaaatgatgccaatctgatg
ggactgggagaaacaatgtacggagccggtcagggagccactcatgttgttttcttgacg
gtaggaacgggtattggcggtgcagtagtcatcgacggcaaattgttcaacggttatgcc
aaccggggaacggaactgggacacgtacctctcattgccaatggcgaaccgtgtgcttgc
ggttctgtcggctgtctggaacactatgcttccacttctgctttggtacgccgcttcagt
caacgaataatagacgcaggtatctcctacccgaatgaagagattaacggagaattgatt
gtccgtctttataaacaaggggatccgattgcaaaaatatcactggaagaacactgtgac
tttttgggacacggaattgcaggctttatcaatatcttcagtccgcaaaagattgtgatt
ggtggagggctctccgaagcaggagacttttacattcagaaagtaagcgaaaaagcacgt
agttatgccatccccgactgtgctgtgaatactcaaatcatagctgccgctcttggaaac
aaggccggaagtattggagctgcgtcacttgtatttactcaattatctgctccaaacctg
attaaattatga

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