Physeter macrocephalus (sperm whale): 102996053
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Entry
102996053 CDS
T06011
Symbol
ADPGK
Name
(RefSeq) ADP-dependent glucokinase isoform X1
KO
K08074
ADP-dependent glucokinase [EC:
2.7.1.147
]
Organism
pcad
Physeter macrocephalus (sperm whale)
Pathway
pcad00010
Glycolysis / Gluconeogenesis
pcad01100
Metabolic pathways
pcad01200
Carbon metabolism
Module
pcad_M00001
Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
Brite
KEGG Orthology (KO) [BR:
pcad00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
102996053 (ADPGK)
Enzymes [BR:
pcad01000
]
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
102996053 (ADPGK)
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GFIT
Motif
Pfam:
ADP_PFK_GK
Motif
Other DBs
NCBI-GeneID:
102996053
NCBI-ProteinID:
XP_023984438
Ensembl:
ENSPCTG00005012316
UniProt:
A0A2Y9T272
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Position
11:complement(64390702..64425400)
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AA seq
497 aa
AA seq
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MALWRGSAYAGFLALAVGCVFLLEPQLPGSALRWLWSSLQLGPAPVPPGPGSPEGRLAAA
WDALIVRPARSWRRVAVGVNACVDVVLSGVKLLQALGLNPGNGKDHTELRSRNDLEDAFV
HFMGKGAAAERFFSDKETFHNIAQIASEFPGAQHYVGGNAALIGQKFAANSDLKVLLCGP
VGPKLHELLDDNVFVPPESLQEVDEFHLILEYQAGEEWGRLKAPHANRFIFSHDLSNGAM
NMLEVFVSSLEEFQPDLVVLSGLHMMEGQSKEFQRKRLLEVMTSISDIPTGIPVHLELAS
MTNRELMSSIVHQQVFSAVTSLGLNEQELLFLSQSASGPHSSLSSWTGVPDVGVVSDILF
WILKEHGKSESRASDLTRIHFHTLAYHILATVDGHWANQLAAVAAGARMAGTQACATETI
DTRRVSLKAPREFMTSRSAAGSRVMLNPNEPVVEWHREGVSFHFTPVLVCKDPVRTVGLG
DAISAEGLFYSEVHPHS
NT seq
1494 nt
NT seq
+upstream
nt +downstream
nt
atggcgctgtggcgcggctccgcgtacgccggcttcctggcgctagctgtgggctgcgtc
ttcctgctggagccgcagctgccagggtcggcgctgcgctggctgtggagctcgctgcag
ctggggcctgcgcccgtgcccccaggacccggctcccctgagggccggttggctgctgcc
tgggacgcgctcatcgtgcggccggcccggagttggcgccgcgtggccgtgggagtcaat
gcatgtgtggatgtagtgctgtcaggggtgaagctcttgcaggcacttggcctgaatcct
gggaatgggaaagatcacactgagctgcgttcgaggaatgacctagaagatgccttcgtt
cacttcatggggaagggagcagctgctgaacgcttcttcagtgataaggaaactttccat
aacatcgcccagattgcatcagagttcccaggagcccagcactatgtaggaggaaatgca
gctttaattggacagaaatttgcagccaactcagatttaaaggttcttctttgtggtccg
gttggtccaaagctgcatgaacttcttgatgacaatgtatttgttccaccagagtcactg
caggaagtggatgagttccacctcattttagagtatcaggcaggggaggagtggggccgg
ttaaaagctccccatgccaaccgattcatcttctcccacgacctctccaacggggccatg
aatatgctggaggtgtttgtgtctagcctggaggagtttcagccagacctggtggtcctc
tctggattgcacatgatggagggacaaagcaaggagttccagaggaagagactcctggag
gtcatgacctccatttctgacatccctacgggtattccagttcacctggagctggccagc
atgacaaacagggagctcatgagcagcattgtgcatcagcaggtcttttctgccgtgact
tcccttgggctgaatgaacaggagctgttatttctcagccagtcggcatctggacctcac
tcttccctctcttcctggaccggtgttcctgatgtgggcgtggtcagcgacatcctcttt
tggatcttgaaggaacatgggaagagtgaaagcagagcctcagacctcaccaggatccac
ttccacacactggcctaccacatcctggcaactgtggatggacactgggccaaccagctg
gcggccgtggctgcaggagctcgcatggccgggacacaggcctgcgcgacagaaaccata
gacacccgccgagtgtctctgaaggcgccccgtgagttcatgacctcccgttcggcggcc
ggctccagggtcatgttaaacccaaacgagcccgtggtcgaatggcacagggagggagtg
tccttccacttcacaccagtgttggtgtgtaaagatcctgttcgaactgtgggcctcgga
gatgccatttcagccgaaggactcttctattcagaagtacaccctcactcgtag
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