Mus caroli (Ryukyu mouse): 110309153
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Entry
110309153 CDS
T05910
Symbol
Atp12a
Name
(RefSeq) potassium-transporting ATPase alpha chain 2
KO
K01544
non-gastric H+/K+-exchanging ATPase [EC:
7.2.2.19
]
Organism
mcal
Mus caroli (Ryukyu mouse)
Pathway
mcal00190
Oxidative phosphorylation
mcal01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
mcal00001
]
09100 Metabolism
09102 Energy metabolism
00190 Oxidative phosphorylation
110309153 (Atp12a)
Enzymes [BR:
mcal01000
]
7. Translocases
7.2 Catalysing the translocation of inorganic cations
7.2.2 Linked to the hydrolysis of a nucleoside triphosphate
7.2.2.19 H+/K+-exchanging ATPase
110309153 (Atp12a)
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GFIT
Motif
Pfam:
E1-E2_ATPase
Cation_ATPase_C
Cation_ATPase
Hydrolase
Cation_ATPase_N
Hydrolase_3
HAD
Motif
Other DBs
NCBI-GeneID:
110309153
NCBI-ProteinID:
XP_021037267
Ensembl:
MGP_CAROLIEiJ_G0019336
UniProt:
A0A6P5QSD9
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All DBs
Position
14:47620593..47644107
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AA seq
1035 aa
AA seq
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MRRKTEIYSVELNGTKDVEPADQKDDKKFKGGKNKDSEPNKSQEEELKKELDLDDHRLSN
TDLEQKYGTNIIRGLSSIRAAELLARDGPNALTPPKQTPEIIKFLKQMVGGFSILLWIGA
ALCWIAYVIQYVSSTASLDNVYLGAILVLVVILTGIFAYYQEAKSTNIMASFSKMIPQQA
LVIRDAEKKIIPAEQLVVGDVVEIKGGDQIPADIRLVFSQGCKVDNSSLTGESEPQARST
EFTHENPLETKNIGFYSTTCLEGTATGIVINTGDRTIIGRIASLASGVGSEKTPIAIEIE
HFVHIVAAVAVSVGVIFFITAVCMKYYVLDAIIFLISIIVANVPEGLLATVTVTLSLTAK
RMAKKNCLVKNLEAVETLGSTSIICSDKTGTLTQNRMTVAHLWFDNQIFVADTSENQTKQ
AFDQSSGTWASLSKIITLCNRAEFRPGQESVPIMKRVVVGDASETALLKFSEVVLGDVMD
IRKRNHKVAEIPFNSTNKFQLSIHETEDPNDKRFLMVMKGAPERILEKCSTIMINGQEQP
LDKSSADAFHTAYMELGGLGERVLGFCHLYLPADKFPQSYTFDVDSINFPTSNLCFVGLL
SMIDPPRSTVPDAVSKCRSAGIKVIMVTGDHPITAKAIAKSVGIISANNETVEDIAKRRN
IAVEQVNKREAKAAVVTGMELKDMTPEQLDELLINYQEIVFARTSPQQKLIIVEGCQRQD
AVVAVTGDGVNDSPALKKADIGIAMGIAGSDAAKNAADMVLLDDNFASIVTGVEEGRLIF
DNLKKTIAYTLTKNIAELCPFLIYIVAGLPLPIGTITILFIDLGTDIIPSIALAYEKAES
DIMNRKPRHKKKDRLVNKQLAIYSYLHIGLMQALGGFLVYFTVYAQQGFWPTSLINLRVS
WETDDINDLEDSYGQEWTRYQRKYLEWTGSTAFFVAIMVQQIADLIIRKTRRNSIFQQGL
FRNKVIWVGIISQIIVALILSYGLGSVTALSFTMLRAQYWFVAVPHAILIWVYDEMRKLF
IRLYPGSWWDKNMYY
NT seq
3108 nt
NT seq
+upstream
nt +downstream
nt
atgcgccggaaaacagaaatttattctgtagagctcaatggaactaaagacgtcgagccg
gcagaccagaaagatgacaaaaagttcaagggcgggaagaacaaagactcagaacccaac
aagagccaggaggaggagctgaagaaagaactagatctggatgaccacagactcagtaat
acagatttggaacagaaatatggtacaaacatcatccggggtctctccagtatcagagct
gcagagctcctggctcgggatgggcccaatgcccttacccctcccaagcaaactccagag
attatcaagttcctcaagcagatggtggggggcttttccatccttctgtggataggtgca
gccttgtgctggatcgcatatgtgatccagtatgtcagcagtacagcatccctggacaat
gtctatttgggcgccatacttgtcctggtcgttattttaacggggatttttgcttattac
caagaagccaaaagtaccaacattatggcaagctttagtaagatgatcccccagcaagct
cttgtcatccgagatgcggaaaagaagatcattccagcagagcagctggtggtgggggac
gttgtggagattaaaggaggggaccagatacctgcagacatcagactggtgttttcccaa
gggtgcaaagtagataactcctctctcactggggagtctgagccccaggctcgttcaact
gagtttacccacgaaaaccccttggaaactaagaacataggcttctattctacaacgtgc
ctggaaggtacagcaactggcattgtcatcaacacgggtgaccgcaccatcatcgggcgc
atagcctccttggcttcgggcgttgggagtgagaagacacccatagccattgagattgag
cattttgtccatattgtggcagcagtggctgtgtccgttggtgtcattttcttcatcacc
gccgtgtgcatgaagtactacgtcctggatgccatcatcttcctcattagcatcattgtg
gccaatgtgccagagggcctcctggctactgtcactgttaccctgtcactgacggcaaag
cggatggctaagaagaactgcctggtaaagaacctggaggcagtggagacgcttggctcc
acctccatcatctgctcagataagacagggaccctcactcagaacaggatgactgtggcc
cacttgtggtttgacaaccagatctttgtggctgatacaagtgaaaaccagacaaaacaa
gcctttgaccaaagctctggaacctgggcttccttgtccaagataataacactgtgtaac
cgagcagagttcaggccaggccaggagagtgtccccatcatgaagagagttgtggttgga
gatgcctcggaaactgctctgctaaagttctcggaggttgttttgggtgatgtgatggac
attaggaaaagaaaccacaaagtggctgagattccttttaattctaccaacaaatttcag
ctctccattcatgagaccgaggacccgaatgacaagcgcttcctcatggtgatgaaaggg
gcccccgagaggatcttagagaagtgcagcaccatcatgatcaacggccaggagcagcca
ctggacaagagctctgccgatgccttccacacagcctacatggagctgggtggtctggga
gagcgtgtgttgggtttctgtcacctctacttgccagcagataagtttccccaaagctac
acatttgatgtagactccataaactttcccacttccaatctctgctttgtggggcttctg
tccatgattgaccctcctcggtctaccgtgccagatgcggtctccaaatgtcggagtgcg
gggatcaaggttatcatggtcacaggtgatcaccctatcacagccaaagctattgccaag
agtgtaggaatcatatcagccaacaatgagacagtggaagacatcgcaaaacgccgcaac
atcgctgtggagcaagtcaacaaaagagaagcgaaagctgctgtggtgactggcatggaa
ctgaaggacatgaccccagaacaactggatgagcttttaatcaactaccaagaaattgtg
tttgcccggacatcaccccagcagaagttgatcattgtagagggctgtcagaggcaggat
gcagttgttgctgtgacgggtgatggagtgaacgactctccagcattaaagaaggcagac
atcgggattgctatggggatagcaggttctgatgctgctaagaatgcagctgacatggtc
ttgctagatgacaactttgcatctatagtcacaggggtggaggaaggtcgcctgatcttc
gacaacctgaagaagaccattgcttacaccctgacaaagaacatcgctgagctctgtcct
tttttgatctacattgttgctgggctccccctgcctattggcaccatcactatcctattc
atcgacctgggcacagacattatcccctccattgccttggcctatgagaaagcagaaagt
gacattatgaataggaaacctcgccacaagaagaaagacagactggtgaacaagcagctg
gccatctactcttaccttcacattggtctcatgcaagccctgggaggtttcctcgtctat
ttcactgtctatgcacagcagggcttttggcccacctctctcatcaacctgagggtatca
tgggaaacagatgacataaatgacttggaagatagctacgggcaagaatggacgaggtat
cagagaaaatacctggaatggacaggctcaacggctttctttgttgccatcatggtgcaa
caaattgcagatcttatcatcaggaaaacccggaggaattccatcttccagcaggggctc
ttcagaaacaaagtcatctgggtggggatcatctcacagatcatcgttgcattgatcctc
tcctatggtctcgggagtgtcacagctctgagctttaccatgctcagggctcagtactgg
tttgtggctgtcccgcacgccattttgatttgggtgtatgacgagatgcggaagttgttc
atccggctctaccctggaagctggtgggacaagaacatgtattattaa
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