Crocodylus porosus (Australian saltwater crocodile): 109314483
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Entry
109314483 CDS
T07440
Symbol
ATP1A3
Name
(RefSeq) sodium/potassium-transporting ATPase subunit alpha-3
KO
K01539
sodium/potassium-transporting ATPase subunit alpha [EC:
7.2.2.13
]
Organism
cpoo
Crocodylus porosus (Australian saltwater crocodile)
Pathway
cpoo04260
Cardiac muscle contraction
cpoo04261
Adrenergic signaling in cardiomyocytes
cpoo04820
Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:
cpoo00001
]
09140 Cellular Processes
09142 Cell motility
04820 Cytoskeleton in muscle cells
109314483 (ATP1A3)
09150 Organismal Systems
09153 Circulatory system
04260 Cardiac muscle contraction
109314483 (ATP1A3)
04261 Adrenergic signaling in cardiomyocytes
109314483 (ATP1A3)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
cpoo04147
]
109314483 (ATP1A3)
Enzymes [BR:
cpoo01000
]
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
109314483 (ATP1A3)
Exosome [BR:
cpoo04147
]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
109314483 (ATP1A3)
Exosomal proteins of other body fluids (saliva and urine)
109314483 (ATP1A3)
Exosomal proteins of colorectal cancer cells
109314483 (ATP1A3)
Exosomal proteins of bladder cancer cells
109314483 (ATP1A3)
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
E1-E2_ATPase
Cation_ATPase
Cation_ATPase_N
Hydrolase
Cation_ATPase_C
Hydrolase_3
HAD
AsnC_trans_reg_3
Motif
Other DBs
NCBI-GeneID:
109314483
NCBI-ProteinID:
XP_019397242
Ensembl:
ENSCPRG00005011977
LinkDB
All DBs
Position
Unknown
AA seq
894 aa
AA seq
DB search
MGYGRSDSYRVATTQDKGNEKDSPQKGSKGAKARDLDDLKKEVAMTEHKMSIEEVCRKYN
TDCVQGLTHSKAAEILARDGPNALTPPPTTPEWVKFCRQLFGGFSILLWIGAILCFLAYG
ILAGTEDEPSNDNLYLGIVLAAVVIITGCFSYYQEAKSSKIMESFKNMVPQVRGGTGQGL
QALVIREGEKMQLNAEEVVVGDLVEVKGGDRVPADLRIISAHGCKVDNSSLTGESEPQTR
SPDCTHDNPLETRNITFFSTNCVEGTARGVVIATGDRTVMGRIATLASGLEVGKTPIAVE
IEHFIQLITGVAVFLGVSFFVLSLILGYTWLEAVIFLIGIIVANVPEGLLATVTVCLTLT
AKRMARKNCLVKNLEAVETLGSTSTICSDKTGTLTQNRMTVAHMWFDNQIHEADTTEDQS
GTAFDKSSATWVALSHIAGLCNRAVFKGGQDNVPILKRDVAGDASESALLKCIELSSGSV
KLMRERNKKVAEIPFNSTNKYQLSIHETEDPNDNRYLLVMKGAPERILDRCSTIVFNGKE
QPLDEEMKEAFQNAYLELGGLGERVLGFCHYYLPEDQYPKGFAFDCDDVNFTTENLCFVG
LMSMIDPPRAAVPDAVGKCRSAGIKVIMVTGDHPITAKAIAKGVGIISEGNETVEDIAAR
LNIPVSQVNPRDAKACVIHGTDLKDMTVEQIDEILQNHTEIVFARTSPQQKLIIVEGCQR
QGAIVAVTGDGVNDSPALKKADIGVAMGIAGSDVSKQAADMILLDDNFASIVTGVEEGRL
IFDNLKKSIAYTLTSNIPEITPFLLFIMANIPLPLGTITILCIDLGTDMVPAISLAYEAA
ESDIMKRQPRNPRTDKLVNERLISMAYGQIGADQAQIDVTFKNQTRTFSEHLGN
NT seq
2685 nt
NT seq
+upstream
nt +downstream
nt
atggggtacggccgctctgacagctaccgcgtggctaccacgcaggacaagggcaatgag
aaggactcgccccagaagggctccaagggcgccaaggcccgcgacctcgatgacctcaag
aaggaggtggccatgaccgagcacaagatgtccatcgaggaggtctgccggaagtacaac
acggactgcgtgcagggcctgacccacagcaaagccgcggagatcctggcgcgcgacggc
cccaacgcgctcacgccgccgcccacgacccccgagtgggtcaagttctgccgccagctc
ttcgggggcttctccatcctgctctggatcggcgccatcctctgcttcctggcctacggc
atcctggccggcacggaggacgagccctccaacgacaacctgtatctcggcatcgtgctg
gccgccgtggtcatcatcaccggctgcttctcctactatcaagaggccaaaagctccaaa
atcatggagtccttcaagaacatggtgccccaggtccggggagggacgggacaggggctg
caagccctggtgatccgcgagggcgagaagatgcagctgaacgcggaggaggtggtcgtc
ggagacctcgtggaggtcaagggcggagaccgggtccccgccgatctgcgcatcatctcg
gcccatggctgcaaggtggataactcgtcgctgacgggcgaatccgagccgcagacccgc
tcccccgactgcacccacgacaacccgctggagacccgcaacatcaccttcttctccact
aactgcgtggagggcacggcccggggcgtggtgatcgccacgggcgaccgcacggtgatg
ggccgcatcgccacgctggcctcggggctggaggtgggcaagaccccgatcgcagtggag
atcgagcacttcatccagctcatcaccggcgtcgccgtcttcctcggcgtctccttcttc
gtgctctcgctcattctgggctacacctggctcgaggccgtcatcttcctcatcggcatc
atcgtcgccaacgtgcccgaggggctgctggccaccgtcaccgtgtgcctgacgctgacg
gccaagcgcatggcgcgcaagaactgcctggtgaagaacctggaggcggtggagacgctc
ggctccacctccaccatctgctccgacaagaccggcaccctcacgcagaaccgcatgacc
gtggcccacatgtggttcgacaaccagatccacgaggccgacaccaccgaggaccagtcc
ggcacggccttcgacaagagctcggccacgtgggtggctctgtcgcacatcgcgggactc
tgcaaccgcgccgtcttcaagggggggcaggacaacgtgcccatcctcaagcgggacgtg
gccggagatgcgtcggagtcggcactgctcaagtgcattgagctgtcgtctggctccgtg
aaactcatgcgggagcggaacaagaaggtggccgagatccccttcaactccaccaacaag
taccagctctccatccacgagactgaggaccccaatgacaatcggtacctgctggtgatg
aagggggcccctgagcgcatcctggaccgctgctccaccatcgtgttcaatggcaaggaa
cagccgctggacgaggagatgaaggaggccttccagaatgcctacctggagctggggggc
ctgggcgagcgcgtccttggcttctgccactattacctgcctgaggaccaatatcccaag
ggctttgccttcgactgtgatgatgtcaacttcactactgaaaacctctgcttcgtgggg
ctcatgtcgatgatcgatcccccccgtgccgctgtgcccgatgctgtgggcaagtgccgc
agcgctggcatcaaggtgatcatggtgacaggcgaccaccccatcacagccaaggccata
gctaagggagtgggcatcatctctgagggcaatgagacagtggaggacattgctgcccgc
ctcaacatccctgtcagccaggtcaaccccagggatgccaaggcctgtgtgatccatggc
acggacctgaaggacatgacagtggagcagattgacgagatcctgcagaaccacactgag
atcgtcttcgcccgcacttcaccccagcagaagctcatcatcgtagagggatgccagcgt
cagggggcgatcgttgcagtgactggggatggtgtgaatgactcaccagcactgaagaag
gctgatattggtgtggctatgggcattgccggctctgatgtgtccaagcaggcagctgac
atgatcctgctggatgacaactttgcctccattgtcaccggcgtcgaggaggggcgcctg
atttttgacaacctgaagaagtcgatcgcctacaccctgaccagcaacatcccagagatc
acccctttcctgctcttcatcatggccaacatccccctgcccctggggaccatcaccatc
ctgtgcatcgacttgggcactgacatggtccccgccatctcgctggcctacgaagcggcc
gagagcgacatcatgaagcggcagccgcggaacccgcgcactgacaagctggtcaacgag
cggctcatcagcatggcctacgggcagatcggtgcggaccaggctcagattgacgtgacc
ttcaaaaaccagacccggaccttcagcgaacacctgggcaactaa
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