Entry
Name
(RefSeq) LOW QUALITY PROTEIN: sodium/potassium-transporting ATPase subunit alpha-like
KO
K01539 sodium/potassium-transporting ATPase subunit alpha [EC:7.2.2.13 ]
Organism
mcix Melitaea cinxia (Glanville fritillary)
Pathway
Brite
KEGG Orthology (KO) [BR:mcix00001 ]
09140 Cellular Processes
09142 Cell motility
04820 Cytoskeleton in muscle cells
123659627
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:mcix04147 ]
123659627
Enzymes [BR:mcix01000 ]
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
123659627
Exosome [BR:mcix04147 ]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
123659627
Exosomal proteins of other body fluids (saliva and urine)
123659627
Exosomal proteins of colorectal cancer cells
123659627
Exosomal proteins of bladder cancer cells
123659627
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
14:complement(9481644..9491580)
Genome browser
AA seq
997 aa AA seq DB search
MNSRSSSLSSISDLFRPNNPRKLRSKDLSYTRLNVLKKEIQTDTHLIPLKDLYTLLGTDP
VNGLSSEKAKDLLDYYGPNTLTPPSHFNWARLLFKSLCTGFSILIWFGAILCLSAYVIEF
STKLDPSPDNLYLGCVLIAVDLICGMFSFIQNYKSSKIMKTFNSMIPMYANCLRDGVLNR
ETLVQDLVRGDIVHVEIGDVIPADIRIIDSKGFKVDNSSLTGECIAVPRSNTDGTENILE
SPNVAFFSALCVEGWASGVVLCCGDLTALGRVAGLAARLQPAPSPLSREIKRFMRYMSTW
ALVLGVFIATASIILGYPFMQTTIFVIGIIVANIPEGLQPTITASLTLTAKSMVQRKCLV
KNLEAIEALGACTTICSDKTGTLTENKMCVRHVWTWNKYYSVSFVTSEKYVXPFLENKSS
IRIFPAWNSLKICGSLCSNASVVKDGVVRGDASEKAIFIFLFNYCDPVTIRQRYPKVAEI
PFNSVNKYQITIHLDETLSTYLLVMKGAPECILSRCVTVAFNNKSISMTDEIKQEAYKAT
ESLANTGERVLAFADCQLDSNTYPLNYSFDTDNLNFPIDKLRFLGLFGLKDPPREEVRSA
IQRVREAGVRVMMVTGDHPATARAIALEVGIATSRSCHVVTGTELRNMSPDLLYLTLEKH
YEIVFARTSPTQKLQIVEACQRQGGVVAVTGDGVNDAPALRRADIGISMGIAGSQVSKQT
ADIILMDDNFATIVTGIEEGRKIFDNLKKSVCYILISNVPEILPVLMFILFSIPLPLGVM
TILCVDLGTDMWPAVSLSHEQAERDVMARPPRTSDPLVSGRMLRLVYLHLGLVEFSAGMF
AYFIVMAEHGFYPSQLFGIRQQWDNEAVSDVQDSLGQEWTYAERKELERACQAAYFVAVV
ISQMMNGIICKTRFNSLFHVGMKNNVLNVGLVFEFSLACIVCYVPGINTFFRTYPLRLKW
WFLALPFAVFMLIFDELRKYCIRKELFGGWFNKLTLY
NT seq
2994 nt NT seq +upstream nt +downstream nt
atgaattcaagaagttctagtctgtcttccatttcggatctttttcgtccgaataatcct
agaaaactaagatcgaaagatttaagctatactcgtttaaatgttttgaagaaggaaata
caaacagacacacatttaatacctctgaaagatctttataccctattgggcactgacccg
gtcaatggattatcgagtgaaaaggctaaagacctcttggactattacggtccaaatact
ttgacgccgccatcgcacttcaactgggcacggttgctatttaaatctttatgcacagga
ttttcaattttaatatggtttggtgccatactttgcttgtcagcatacgtaatagagttt
tcgacaaaactggaccctagccctgataacctttacttagggtgtgtattaattgccgtg
gatttaatatgtggcatgttcagttttatacaaaattataaaagttctaagataatgaaa
acttttaatagtatgatacctatgtatgcaaactgcttgcgcgacggggtcttaaatcga
gaaactctagttcaagatttagtcagaggagacattgttcacgtcgaaattggtgatgtt
atacctgccgatatacgtataattgatagcaaaggatttaaagttgataactcttcatta
actggtgaatgtatagcagtaccacgaagtaacaccgatggaacagaaaatattttggaa
tcgccaaatgttgctttcttttcagcgctttgcgtcgaaggttgggcgtcaggagtcgtt
ttgtgttgcggagatctgacagctttagggcgggtcgcgggtctggctgcacgcttacag
cccgcaccttcaccgctctcgagagaaatcaaacgattcatgcgttacatgtcaacttgg
gcacttgtattaggggttttcatcgcgactgccagcataattttgggttatccttttatg
caaacgactatatttgtcattggtatcattgttgctaatattccagaaggtttacagcca
acaattacagcctccttaacattaacggcgaaaagtatggttcagaggaaatgtcttgta
aaaaatttagaggctattgaagctttaggagcctgtacaactatttgttctgataaaact
ggcactctaaccgaaaataaaatgtgcgttcgccacgtttggacgtggaataaatattat
tcagtatcttttgttactagtgaaaaatatgtttagccatttcttgaaaataaaagttca
atcaggatttttccagcatggaattctttaaaaatatgtggatctttatgcagtaatgca
tcagtcgttaaagacggagtcgtgcgtggcgatgcgtcagaaaaagcaatttttattttt
ttatttaactattgtgatccagtaacaattagacaaagatatcccaaagtggctgaaatt
ccattcaactctgttaacaaataccaaatcactattcatctggacgaaacgttgtcaacg
tatctgttagttatgaagggtgctccggaatgtatactctctcgatgtgtaacagtcgct
tttaacaacaagtctataagcatgaccgatgaaattaaacaagaagcttataaagctact
gaaagtttagctaatactggtgaacgagttttagcatttgcggattgccaattagattca
aatacatatccattgaattattcattcgacacagataatctcaactttccaattgataag
cttcgatttcttggcctctttggattaaaagatccaccaagagaggaggttcgctcggca
atccagagagtccgagaggcaggagttcgtgtgatgatggtcactggtgaccaccctgca
actgctcgtgccatagctttagaagttggcattgccaccagccgaagttgtcacgttgta
actggtactgaacttagaaatatgtcgccagatttattgtacttaaccctggaaaaacat
tatgaaatagtatttgcacgtacgtctccgacacaaaaactacaaatagtggaagcatgt
cagaggcaaggcggtgtcgtggcagtgacgggggatggcgtaaatgatgcaccagcatta
agacgagcagacatcgggatttctatggggatcgctggctcacaagtatcaaaacaaaca
gctgacattatattaatggatgacaacttcgctactattgtaacgggaattgaagaaggt
cgcaaaatttttgataatctaaaaaagtcagtttgctacattctgatatccaatgttcca
gaaattttgcccgtgctaatgtttattctattttcgatacccctcccactaggggtaatg
acaatactttgcgtggatctcggtacggatatgtggccggcggtgtctctgtctcacgag
caggctgaacgagatgtaatggcacgcccgcctcgtacgtccgacccacttgtttcgggt
cgcatgttacgtctcgtgtacttacacctcggcctcgtcgagttctccgctggcatgttc
gcgtacttcattgtcatggctgaacatggattctacccctcgcaattgtttggcattagg
caacaatgggacaacgaagcggtgagcgacgtccaagactcgctaggtcaagagtggacc
tacgcggagcgcaaagaactagaacgcgcctgtcaagccgcctacttcgtggctgtagtc
atatcacaaatgatgaacggaattatttgtaagacaagattcaattctctatttcacgtc
ggtatgaaaaacaacgttttgaatgtgggtttagtatttgaattctctcttgcatgtata
gtatgctacgttccaggtatcaacacgttttttagaacgtaccctctacgtttgaagtgg
tggttcttagctctaccatttgcagtattcatgttaatatttgatgaacttagaaagtat
tgtattcgaaaagagttgttcggtgggtggtttaataagttgactttatattaa