Salmo salar (Atlantic salmon): 106575572
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Entry
106575572 CDS
T04363
Symbol
AT1A1, ATP1A1, ATP1A1B/ii
Name
(RefSeq) sodium/potassium-transporting ATPase subunit alpha-1-like
KO
K01539
sodium/potassium-transporting ATPase subunit alpha [EC:
7.2.2.13
]
Organism
sasa
Salmo salar (Atlantic salmon)
Pathway
sasa04260
Cardiac muscle contraction
sasa04261
Adrenergic signaling in cardiomyocytes
sasa04820
Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:
sasa00001
]
09140 Cellular Processes
09142 Cell motility
04820 Cytoskeleton in muscle cells
106575572 (AT1A1)
09150 Organismal Systems
09153 Circulatory system
04260 Cardiac muscle contraction
106575572 (AT1A1)
04261 Adrenergic signaling in cardiomyocytes
106575572 (AT1A1)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
sasa04147
]
106575572 (AT1A1)
Enzymes [BR:
sasa01000
]
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
106575572 (AT1A1)
Exosome [BR:
sasa04147
]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
106575572 (AT1A1)
Exosomal proteins of other body fluids (saliva and urine)
106575572 (AT1A1)
Exosomal proteins of colorectal cancer cells
106575572 (AT1A1)
Exosomal proteins of bladder cancer cells
106575572 (AT1A1)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
E1-E2_ATPase
Cation_ATPase_C
Cation_ATPase
Cation_ATPase_N
Hydrolase
Hydrolase_3
HAD
Motif
Other DBs
NCBI-GeneID:
106575572
NCBI-ProteinID:
XP_014007630
UniProt:
A0A1S3MWZ8
LinkDB
All DBs
Position
ssa17:complement(19064834..19075775)
Genome browser
AA seq
1058 aa
AA seq
DB search
MYKHSYLCSLQQLFVIIFSFKGAGFLSNQPTREKKGKDDYKLAATSEDDGNKKSKKELKK
AKEKKDMDDLKKEVDLDDHKLTLDELHRKYGTDLARGLSSARAKEILLRDGPNTLTPPPT
TPEWVKFCRQLFGGFSMLLWIGAMLCFLAYGIQAASEDEPANDNLYLGVVLSVVVIVTGC
FSYYQEAKSSKIMDSFKNLVPQQALVVRDGEKKNINAEEVVVGDLVEVKGGDRIPADLRI
VSASGCKVDNSSLTGESEPQTRTPDFSNDNPLETRNIAFFSTNCVEGTARGIVINTGDHT
VMGRIATLATSLEGGKTPIAKEIEHFIHIITGVAVFLGVSFFVLSLILGYGWLEAVIFLI
GIIVANVPEGLLATVTVCLTLTAKRMAKKNCLVKNLEAVETLGSTSTICSDKTGTLTQNR
MTVAHMWFDNQIHEADTTENQSGTCFDKSSATWASLARVAGLCNRAVFLAEQNNVPILKR
DVAGDASESALLKCIELCCGSVKAMREKYSKIAEIPFNSTNKYQLSIHKNIAAGESKHLL
VMKGAPERILDRCSTILIHGKEQPLDDELKEAFQNAYEELGGLGERVLGFCHFQLPDDQF
AECFNFDCEEVNFPTENLCFVGLMSMIDPPRAAVPDAVGKCRSAGIKVIMVTGDHPITAK
AIAKGVGIISEGNETVEDIAARLKIPVSEVNPRDAKACVVHGGELKDLSAEQLDDILSHH
TEIVFARTSPQQKLIIVEGCQRQGAIVAVTGDGVNDSPALKKADIGVAMGISGSDVSKQA
ADMILLDDNFASIVTGVEEGRLIFDNLKKSIAYTLTSNIPEISPFLLFIIANIPLPLGTV
TILCIDLGTDMVPAISLAYEEAENDIMKRQPRNPKTDKLVNERLISIAYGQIGMMQATAG
FFTYFVILAENGFLPMDLLGMRVDWDNKIMNDMEDSYGQQWTYERRKIVEFTCHTAFFAS
IVVVQWADLIICKTRRNSILQQGMKNRILIFGLFEETALAVFLSYCPGMDVALRMYPLKP
CWWFCALPYSLLIFLYDEGRRYILRRNPGGWVEQETYY
NT seq
3177 nt
NT seq
+upstream
nt +downstream
nt
atgtacaaacacagttatttatgctcgcttcaacagcttttcgtgataatatttagcttc
aaaggtgcaggatttctttcaaatcaaccaacacgtgagaaaaaggggaaagatgattat
aagctggcggcgacctcagaggacgatggaaataaaaagagtaaaaaggagttgaagaaa
gcaaaggagaagaaggacatggacgatctgaaaaaggaagttgacctggatgaccacaag
ttgaccttggatgaacttcataggaaatacggcacagacttagccaggggtctatcctca
gctcgggctaaggagatccttcttcgtgatggccccaacaccctgacccctcctcccact
acccctgagtgggtgaagttctgcaggcagctctttggtgggttctctatgctcctatgg
attggtgctatgctctgcttcctggcctacggaatccaggccgcctccgaggatgagccg
gctaatgataatttgtacctgggtgttgtgctctctgttgtcgtcattgtcactggctgt
ttctcctactaccaagaggccaagagctcaaagatcatggactccttcaagaacctagtc
ccacagcaagccctggttgtccgtgacggtgagaagaagaacatcaatgctgaagaagtg
gtggttggagatctggtggaggtgaaaggaggagataggatcccagctgatttgcgtatc
gtctctgccagcggctgcaaggtggacaactcctccctcactggtgaatctgagccccag
acacgtactccagatttctccaatgacaaccccctggagacaaggaacattgccttcttc
tctaccaactgtgttgaaggaactgccagaggtattgtcatcaacactggtgaccacact
gtcatgggtcgtatcgccaccttggccacgagtctggagggtgggaagacgcctatagcc
aaagagattgagcactttatccacatcatcaccggtgtggccgtcttcctgggcgtgtct
ttcttcgtcctctccctcattctgggatatggttggctggaagctgtcatcttcctcatt
ggaatcatcgttgctaatgtgccagagggtctcctggctactgtaactgtgtgtttaact
ctgactgccaagcgtatggccaagaagaactgcctggtgaagaatcttgaagctgttgag
acccttggctccacctccaccatttgctctgacaagaccggaaccctgactcagaacaga
atgaccgtggctcacatgtggttcgacaaccagatccatgaggctgacaccacagagaac
cagagtggtacctgcttcgacaaaagctctgccacctgggcttccctggctagagtcgca
ggcctgtgcaaccgcgccgtcttcctggcagaacagaacaacgtacctatcctcaagaga
gatgtggctggtgatgcttcagagtctgccctgctgaagtgtatcgagctgtgctgcggg
tctgtcaaagctatgagagaaaagtacagcaagatcgctgagattcccttcaactccacc
aacaaatatcagctctccattcataagaacatcgcggccggagagtccaagcacctgctg
gtgatgaagggagcccctgagaggattctggaccgctgctccaccattttgatccatggc
aaagaacagcctctggatgacgagttgaaggaagccttccagaacgcctacgaagagctg
ggagggctgggagagagagtgctgggtttctgccatttccagctccctgatgaccagttt
gccgaatgctttaactttgactgcgaagaggtaaacttcccaaccgagaatctgtgcttc
gttggcctaatgtccatgattgaccctccccgtgctgctgtgcctgatgctgtgggaaag
tgcaggagtgctggaatcaaggttatcatggtcactggtgatcatcccatcactgctaag
gccattgccaagggtgtgggcatcatttctgaaggaaacgagactgttgaggacattgct
gctcgtctgaaaatcccagtttctgaggtcaatccaagagatgccaaggcctgtgttgtc
cacggtggagagctgaaggacctgtcagccgaacagttggatgacattttgtcccatcac
actgagattgtgtttgccagaacttctcctcagcagaagctgatcattgtggagggttgc
cagcgtcagggtgctattgtagctgtgacaggtgatggtgtgaacgattctcctgctctg
aagaaggctgacatcggtgttgctatgggtatctctggatctgacgtctccaagcaggct
gcagacatgatcctcctggatgacaactttgcctccatcgtgactggtgttgaagagggt
cgtctgatctttgacaacttgaagaagtccatcgcctacaccctgaccagtaatattcca
gaaatctcacccttcctcctcttcatcatcgccaacattccactgcccctaggaacagtc
accatcctctgtatcgacctgggaactgatatggtcccagctatctccctggcctatgaa
gaagctgagaacgacatcatgaagcgacagcccagaaaccccaaaactgacaaactggtg
aacgagaggctcattagcatagcctacggtcaaattggtatgatgcaggccacagccggt
ttcttcacatactttgtgatcttggctgagaacgggttcttgcccatggatttgctaggt
atgcgtgtggactgggacaacaagataatgaacgacatggaggacagctacggccagcag
tggacatatgagcgcagaaagattgtggagttcacctgccacacagcattcttcgccagt
attgtagttgtacagtgggccgatttgatcatctgtaagaccaggaggaactccatcctt
cagcagggaatgaagaaccgtattctcatcttcggactgtttgaggaaactgccttggct
gtcttcctgtcctactgtcctggaatggatgtcgccctcagaatgtacccactcaagcct
tgctggtggttttgtgccttaccctactctctgctcatcttcctctatgatgagggtagg
agatacatactgcgacgaaacccaggaggttgggtggaacaggagacctactactga
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