Alosa sapidissima (American shad): 121723259
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Entry
121723259 CDS
T11137
Symbol
adpgk
Name
(RefSeq) ADP-dependent glucokinase isoform X1
KO
K08074
ADP-dependent glucokinase [EC:
2.7.1.147
]
Organism
asad Alosa sapidissima (American shad)
Pathway
asad00010
Glycolysis / Gluconeogenesis
asad01100
Metabolic pathways
asad01200
Carbon metabolism
Module
asad_M00001
Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
Brite
KEGG Orthology (KO) [BR:
asad00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
121723259 (adpgk)
Enzymes [BR:
asad01000
]
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
121723259 (adpgk)
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Gene cluster
GFIT
Motif
Pfam:
ADP_PFK_GK
Motif
Other DBs
NCBI-GeneID:
121723259
NCBI-ProteinID:
XP_041964735
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Position
11:1811006..1852403
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AA seq
501 aa
AA seq
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MWKTATVIAVFAVTLGYFYHTHPNLPGQLWYFSLPFPNGSSTLNVEEDNLNTPTFEQAIA
SAWEALITAPTHQWKRIAVGVNACVDVVVSGVGLLEALALDPGRGFDHEVLQSKNDLMEA
FLHFMERGAAAERFFTDKEVFLSIAQAAAEDPSAQLYVGGNAALMGQKFASYPQLMVLLC
GPVGPKLHQLLDDQIVVPPQSLQETDEFHLILEYQAGEQWGMTQAPQANRFIFSHDVANG
KMSSMEIFAASIEEFQPELVVLSGLHMMEGMGKNLWRERLKEAVVAISDVRKQIPIHLEL
ASMTDKEYMSSIMQEQVIPIVNSIGLNEQELLFLSQAGRGPHSELKTWDGLPDVGRVSDI
LLWILKQHGRSDPSSEADLTRIHFHTLSYHILATVDGYWGNQVAAVAAGARVASCQACGI
QAIDVQKVILKAPHTFYSSHSEPREQLNISPNQPVTIWHRDNVTFYLTPVLVCKQPLRTV
GLGDAISAEGLFYSEMLSHEL
NT seq
1506 nt
NT seq
+upstream
nt +downstream
nt
atgtggaagacggccacagttatagcagtgtttgcggtcactttggggtatttctatcat
actcatccaaacctgccaggtcagctgtggtacttctctctaccattccccaatggctcc
agtaccctgaatgtagaggaggacaacctcaacacacccacttttgaacaggccattgcc
agtgcgtgggaggctcttatcactgctcctacgcatcagtggaaaaggattgctgttgga
gtgaatgcctgtgtggacgtggtggtgtcaggtgtgggtttacttgaagctttggctctt
gatcctggaagaggctttgaccatgaggttttgcagtccaaaaatgacctgatggaagcc
tttcttcattttatggagaggggtgctgcagcagagcgcttcttcacagacaaggaagta
ttccttagtattgcacaggctgctgctgaggaccctagtgctcagctctatgttggtggg
aatgctgctcttatgggacagaagtttgcatcttaccctcagctcatggttctgctttgt
ggacctgttgggcctaagctgcatcagttactggatgatcagattgtagttcctcctcag
tcccttcaagagactgatgagttccaccttattctggagtatcaggccggggaacagtgg
ggcatgacacaggcacctcaagctaaccgtttcatcttttcccatgatgtggccaatggg
aagatgagttctatggagatttttgctgccagcattgaagagttccagccagagttggta
gttctctctggcctgcacatgatggagggaatgggaaagaatctgtggagagaacggctc
aaagaggctgtagtggccatctctgatgttcgcaaacagattcccattcatctggaattg
gccagcatgactgacaaggaatacatgagcagcatcatgcaagagcaggtcatccccata
gtgaactccatcgggctgaatgaacaggagttgctgttcttgtcccaggcgggaagaggc
ccacactctgagctgaagacttgggatggcttaccagatgtgggtcgtgtcagtgacata
cttctgtggatcctcaagcagcatggtcgcagtgatccaagttcagaggctgaccttaca
cgcatccatttccacacattgtcttatcacattttggctacagtcgatggatactggggc
aaccaggtcgcagctgtggcagctggggcacgtgtggctagctgtcaagcttgtggcatc
caggccattgatgtccaaaaagtgatcctcaaagccccacacacattttacagctctcat
agtgagcccagggagcaactgaatatcagtccaaatcagcctgtcacaatatggcaccgt
gataatgtgaccttctatctgacccctgttctggtgtgtaaacaacctctgcggacagtg
gggttaggtgatgccatctctgctgagggactcttttattcagaaatgctgtcacatgag
ctctaa
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