Oncorhynchus mykiss (rainbow trout): 100136182
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Entry
100136182 CDS
T07259
Symbol
atp1a2a
Name
(RefSeq) sodium/potassium-transporting ATPase subunit alpha-2
KO
K01539
sodium/potassium-transporting ATPase subunit alpha [EC:
7.2.2.13
]
Organism
omy
Oncorhynchus mykiss (rainbow trout)
Pathway
omy04260
Cardiac muscle contraction
omy04261
Adrenergic signaling in cardiomyocytes
omy04820
Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:
omy00001
]
09140 Cellular Processes
09142 Cell motility
04820 Cytoskeleton in muscle cells
100136182 (atp1a2a)
09150 Organismal Systems
09153 Circulatory system
04260 Cardiac muscle contraction
100136182 (atp1a2a)
04261 Adrenergic signaling in cardiomyocytes
100136182 (atp1a2a)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
omy04147
]
100136182 (atp1a2a)
Enzymes [BR:
omy01000
]
7. Translocases
7.2 Catalysing the translocation of inorganic cations
7.2.2 Linked to the hydrolysis of a nucleoside triphosphate
7.2.2.13 Na+/K+-exchanging ATPase
100136182 (atp1a2a)
Exosome [BR:
omy04147
]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
100136182 (atp1a2a)
Exosomal proteins of other body fluids (saliva and urine)
100136182 (atp1a2a)
Exosomal proteins of colorectal cancer cells
100136182 (atp1a2a)
Exosomal proteins of bladder cancer cells
100136182 (atp1a2a)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
E1-E2_ATPase
Cation_ATPase_C
Cation_ATPase
Hydrolase
Cation_ATPase_N
Hydrolase_3
Mei5
HAD
DUF1290
Motif
Other DBs
NCBI-GeneID:
100136182
NCBI-ProteinID:
NP_001117930
UniProt:
Q6VYM8
LinkDB
All DBs
Position
8:81746800..81779970
Genome browser
AA seq
1012 aa
AA seq
DB search
MGKGSGAEYGDGKKKKKKEQELDELKKEVSMDDHKISLDDLGRRYGVDLARGLTNAKALE
VLAREGPNVLTPPPTTPEWVKFCRQLFGGFSLLLWIGAILCFLAYSIQVATEDEPANDNL
YLGVVLSAVVIITGCFSYYQEAKSSRIMDSFKNMVPQQALVIREGEKMTINAELVVRGDL
VEIKGGDRIPADLRVVSAAGCKVDNSSLTGESEPQTRTPEFTHENPLETRNIAFFSTNCV
EGTAHGVVVGTGDHTVMGRIATLASGLETGQTPINMEIEHFIQLITAVAVFLGVSFFILA
IILGYTWLEAVIFLIGIIVANVPEGLLATVTVCLTLTAKRMAKKNCLVKNLEAVETLGST
STICSDKTGTLTQNRMTVAHMWFDNMIHEADTTEDQSGATFDKSSATWHALSRVAGLCNR
AEFKAGQETLPILKRDTAGDASESALLKCIQLSCGCVRSMRERNAKVGEIPFNSTNKYQL
SIHEQEDNENGHLLVMKGAPERILDRCSTILIHGQEVPMDANWNEAFQSAYMELGGLGER
VLGFCHLPLSPAQFPRGFSFDCEEVNFPIKGLCFVGLMSMIDPPRAAVPDAVGKCRSAGI
KVIMVTGDHPITAKAIAKGVGIISEGNETVEDIAERLNIPLSQVNPRDAKACVVHGGDLK
DMSAEYLDDLLRNHTEIVFARTSPQQKLIIVEGCQRTGAIVAVTGDGVNDSPALKKADIG
VAMGIAGSDVSKQAADMILLDDNFASIVTGVEEGRLIFDNLKKSIAYTLTSNIPEISPFL
LFIIASIPLPLGTVTILCIDLGTDMVPAISLAYETAESDIMKRQPRCPKTDKLVNDRLIS
MAYGQIGMIQALAGFFTYFVILAENGFWPETLLGIRLNWDDRANNEVEDSYGQQWTYEQR
KIIEFTCHTSFFVSIVVVQWADVIICKTRRNSVFQQGMKNRILIFGLFAETALAAFLSYC
PGMDIALRMYPLKVSWWFCALPYSLLIFIYDEVRKLIIRRYPGGWVELETYY
NT seq
3039 nt
NT seq
+upstream
nt +downstream
nt
atggggaaagggagtggtgctgaatatggagacggaaagaagaagaagaagaaggagcag
gaactggatgagctcaagaaggaggtgtccatggatgatcacaagatatcattggacgat
ctgggaagacgctacggagtcgacctggctcggggtctgaccaatgccaaggctctggag
gtgctggccagggaggggcccaacgtgttgactcctcctcccaccaccccagagtgggtg
aagttctgccgtcagctgttcgggggtttctccttgctcctctggatcggtgccatcctc
tgcttcctggcctacagtattcaggtggccacagaggacgagccagccaatgacaacttg
tacctgggtgtggtcttgtcagctgtggtcatcataactggctgtttctcctactaccaa
gaggccaagagctcacgcatcatggactccttcaagaacatggttcctcagcaagcccta
gtgatcagggaaggagagaagatgacgatcaatgcagagctagtggtgaggggagacctg
gtggagatcaaaggaggagacaggatccctgccgacctccgagtcgtctcagccgcgggc
tgcaaggtggataactcctctctgactggagaatcagagcctcagacacgcacaccggag
ttcacccatgagaaccccctggagactcgaaacatcgccttcttctcaaccaactgtgtg
gagggtacagcccatggcgtagtagtagggactggagaccacacagtgatgggtcgtatt
gccaccctggcctctgggctggagacgggccagactcccatcaatatggagattgaacac
ttcattcaactgatcacggccgtggctgtattcctgggggtcagctttttcatcctggcc
atcatcctggggtacacctggctggaggccgtcatcttcctcattggcatcatcgtcgcc
aacgtccccgagggcctgctggccacagtcactgtatgtctcaccctcactgccaagcgt
atggccaagaagaactgcctggtcaagaatctggaggctgtggagaccctgggttctaca
tccaccatctgttccgacaagacaggcaccctgacccagaaccgcatgaccgtggcccac
atgtggttcgacaacatgatccatgaggccgacactacggaggaccagtctggtgctacc
tttgacaagagctcggctacatggcatgctctgtcccgcgtggctggactctgtaaccgt
gctgagttcaaagccgggcaggaaaccctccccattctgaagagggacactgcgggcgat
gcgtcggaatctgctctgttgaaatgtattcagctctcctgtgggtgtgtccgctccatg
agagaaagaaacgccaaagtgggagagatacccttcaactcaaccaacaagtaccagcta
tccattcatgaacaagaggacaatgaaaatggccacctactcgttatgaagggagcacct
gaaagaatattggacaggtgcagcaccatcttgatccacggccaggaggttccaatggac
gccaactggaacgaagctttccagagtgcctacatggagctgggagggctgggagagaga
gttctagggttctgccacttgccactgtctccggcccagttccctcggggcttctccttt
gactgtgaggaagtcaacttccctataaaagggctgtgtttcgtcggtctcatgtccatg
attgaccctcctcgcgccgccgtccccgatgctgtgggaaaatgccgctccgcagggatt
aaggtcatcatggtgactggcgaccatcccatcactgccaaagccatcgctaaaggcgtg
ggtatcatctccgagggcaacgagactgtggaggacatcgctgaaagactaaatattccc
ctgagtcaagtcaaccccagggatgcaaaggcctgtgtggtacatggaggggacctgaag
gacatgagtgcagagtacctggatgacctactcaggaaccacactgagatagtgttcgcc
cgcacatcacctcagcagaaactcatcatcgtagagggctgccagagaacgggggcaatc
gtggcggttactggggacggagtgaacgactcgcctgccctgaagaaggctgacattggg
gttgctatggggattgctgggtctgacgtctccaagcaggctgcagacatgatcctcctg
gatgacaatttcgcctctattgtcactggagtggaggaaggtcgtctgatctttgataac
ttgaagaagtctatcgcctacacactgacaagtaacattccagagatcagccccttcctc
ctcttcatcattgccagcattcccctgcccctgggcaccgtcaccatcctctgtatcgac
ttgggcacagacatggttcctgctatctcattggcctatgagacggctgagagtgacatt
atgaagcgtcagcccaggtgcccaaagacagacaagctggtgaacgacagactgatcagc
atggcctacggacagataggtatgattcaggctctggctggctttttcacctactttgtg
atcctggctgagaatggcttttggccagagaccctgctgggcatccgtctgaactgggac
gaccgtgccaacaacgaggtggaggacagctatggacagcagtggacctacgaacagcgg
aagattattgagttcacgtgtcacacctcgttcttcgtgagcatcgtggtggtgcaatgg
gccgacgtgattatctgcaagaccaggaggaactctgtctttcagcagggcatgaagaat
cgtatcctgatctttggcctgtttgctgagactgctttggctgcatttttatcctactgc
ccaggaatggacatcgccctccgcatgtatcccctgaaggtctcctggtggttctgtgcc
ctcccctacagtctactcatcttcatctacgatgaggtccgcaagctcatcatcaggagg
tatcctggaggttgggtggaactggagacatattactaa
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