KEGG   Lates calcarifer (barramundi perch): 108877019
Entry
108877019         CDS       T04895                                 
Symbol
adpgk2
Name
(RefSeq) ADP-dependent glucokinase
  KO
K08074  ADP-dependent glucokinase [EC:2.7.1.147]
Organism
lcf  Lates calcarifer (barramundi perch)
Pathway
lcf00010  Glycolysis / Gluconeogenesis
lcf01100  Metabolic pathways
lcf01200  Carbon metabolism
Module
lcf_M00001  Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
Brite
KEGG Orthology (KO) [BR:lcf00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    108877019 (adpgk2)
Enzymes [BR:lcf01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.1  Phosphotransferases with an alcohol group as acceptor
    2.7.1.147  ADP-specific glucose/glucosamine kinase
     108877019 (adpgk2)
SSDB
Motif
Pfam: ADP_PFK_GK
Other DBs
NCBI-GeneID: 108877019
NCBI-ProteinID: XP_018522449
UniProt: A0A4W6G0U9
LinkDB
Position
LG2:complement(26685903..26694542)
AA seq 496 aa
MEGGGRVSWMKYGPVVSLFVVLLAVWFRSPQNEVLDDRLDTVLSSLLRAERKVGMNNVAR
PRVAVGFGGCVDLIVDGVSLLNKIGLPPTDQPLHHDYIENAEQLAQSFAYFFAPGAAAER
FMLNDTLFSELVEASRDLPGNRWSVGGNAPVMAGRMATEGCEVLLGGSFSPDFTDVLSQH
ITVAGNIVEEPDIHLILEYPSGASWGHYISRRANRYIIHSDDHNPYLASMEEFAEKLEDF
NPDLLVVGGLQMMDSFPFQSGEREALLSRLADLLSSSSPQIGVHFEMASFVEESIMEDLL
HFVIPHADSLGMNEQELPNLLSLLKGSNITVLSDPNPRVATVLDQMREVYRILNQHYKDA
NNASEEGETNSAKAKGKPLTRLHVHTLAFQAMIVTRGSQWKNTMSATAKASLTANRHVCG
SNDIDPSKARLIMDDSFSVSRREGSQRIPLQETRPVSCWEEEDYEICVAPVLVCTEVYQT
AGGGDNISAAGLVLQI
NT seq 1491 nt   +upstreamnt  +downstreamnt
atggaggggggaggcagggtttcgtggatgaaatatgggcctgttgtgtccctgtttgtg
gttcttttagccgtttggttccggtcaccccagaatgaagtgctggacgaccggctggac
acggtcctgtcctctctgctccgggctgaacggaaagtcggcatgaacaacgtcgccaga
ccgagagtggctgttggttttggaggttgtgttgacctgatagtggatggggtatctttg
cttaataagatcggcctgcctcccacagaccagccgctgcatcatgactacatcgaaaat
gccgaacagttggctcagagctttgcctacttcttcgcaccaggagctgctgcagagcgt
tttatgctaaatgacaccctcttcagtgagctggttgaggcgtcccgtgacttacctggg
aacagatggtcagtaggcggcaatgctccggtaatggctggtcgcatggcaaccgaggga
tgtgaggtgttgctagggggaagcttcagccctgactttactgatgtcctgtcccagcac
atcacagtggcaggaaacattgtagaagagccagacatccatctgatcttagagtatcca
tctggagcaagctgggggcactatatctcacgtagagccaacagatatatcatccacagt
gatgaccataacccctacctggcctccatggaggagtttgctgagaaacttgaagacttc
aatccagatctgctggtggtgggcggtctgcaaatgatggatagcttccccttccagtca
ggtgagagggaggctctcctctcccgccttgccgacctcctgtcctcctcatcccctcag
attggtgtccattttgagatggccagttttgtagaagagagtataatggaagacctgctt
cattttgtcattccccatgccgactccttggggatgaatgaacaggagctcccaaacctg
cttagcctgctgaaaggctccaacatcacagtgctgtcagacccaaaccctcgtgtagct
actgtcctcgaccaaatgagggaggtctatcgcattctaaaccagcactacaaggacgca
aacaacgccagtgaagaaggtgaaacaaacagtgctaaagctaaggggaaaccgctgacc
cggctccatgtgcacacactcgcctttcaggccatgattgtgacccgtggctctcagtgg
aagaacactatgtcagccactgccaaggcttctctcacagcaaaccgtcatgtctgtggc
tctaatgacattgaccccagcaaggcgaggctcatcatggatgactcattctccgttagc
agacgggagggcagccagcgtatccctctgcaggagaccaggcccgtcagctgctgggaa
gaggaggattatgagatctgtgtggcacccgtgctggtgtgcactgaggtttaccaaact
gcaggtggaggagacaacatctcagctgctggccttgtgctgcagatctag

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