Metarhizium brunneum: 26245147
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Entry
26245147 CDS
T10216
Symbol
Atp12a, G6M90_00g004680
Name
(RefSeq) Potassium-transporting ATPase alpha chain 2
KO
K01539
sodium/potassium-transporting ATPase subunit alpha [EC:
7.2.2.13
]
Organism
mbrn Metarhizium brunneum
Pathway
mbrn04820
Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:
mbrn00001
]
09140 Cellular Processes
09142 Cell motility
04820 Cytoskeleton in muscle cells
26245147 (Atp12a)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
mbrn04147
]
26245147 (Atp12a)
Enzymes [BR:
mbrn01000
]
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
26245147 (Atp12a)
Exosome [BR:
mbrn04147
]
Exosomal proteins
Exosomal proteins of haemopoietic cells (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
26245147 (Atp12a)
Exosomal proteins of other body fluids (saliva and urine)
26245147 (Atp12a)
Exosomal proteins of colorectal cancer cells
26245147 (Atp12a)
Exosomal proteins of bladder cancer cells
26245147 (Atp12a)
BRITE hierarchy
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
E1-E2_ATPase
Cation_ATPase_C
Cation_ATPase
Hydrolase
Cation_ATPase_N
Hydrolase_3
Motif
Other DBs
NCBI-GeneID:
26245147
NCBI-ProteinID:
XP_014542116
UniProt:
A0A7D5YQ86
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Position
1:1530511..1533798
Genome browser
AA seq
1095 aa
AA seq
DB search
MPEDTSSSADEVLEKEADRDLRIAFDDAAHPRGRAAAADQGNRRDSRSLSRRRSMSRDGI
TTAPYSGLPITYRTLSIQVAESRKVETDSSADIKSSKKDDEDYFTNLTFHQLQADQLCQQ
LNVSQSSGLSESSAANRLQRDGGNTLPKPKTNYLKKILMYLFGGFCSVLWVGVVVFFICW
RPLSNPPSPTNLALAILVILVIMLQAGFSAFQDWSTSRTMKSITDLLPAEALVMRDGQLK
KMPATQLVSGDVVHLKIGNKVPADMRLISHSGDIRFDRAVLTGESDEIEGAVDMTDQNFL
ESRNIALMGTLVVNGSGVGVVVLTGPRSVMGRIAKATASTEERATLIQKEIWRFVYIIVA
LTVCLALLILFTWLGWLRRDHYDFMNVVAMLNNVMSCVVAFIPEGMPVAVALTLMMVARK
MKAVNILPKGLSTVETLGCVSVICSDKTGTLTQNKMHVNSASFIDGPIELDDFYRTVNSD
KAEASSTRLLAAASHCNDATFDPTTMNMPVSSREVQGNATDAAVLRLAATANGGDFGTAI
VPRLSQIAFNSKNKWMLTLHRKEADSDGSSGEYQVFVKGAPDVLLPTCTKYWSKKTNSVQ
PMDETARSAFKTYQDKLSRNAERVIVLCEKTLTAKNAVGTNAFSDEVALSATEDLTIVGI
LGIIDPARPETAHTVAECRRAGARFFMVTGDYGLTAAAIARNTGIFSSERDPDTIDTIKS
DKAISAAELANARKTGERHSLLLEGQNLGNLVPEDWDVICEYGEIVFARTTPEQKLRIVE
EFRKRDNVVAVTGDGVNDAPALRAADVGVAIVTGSDVAIEAADLVLLDRFDSIIEAIRWG
RLVFQNLQKVIAYLLPAGSWSEIWPVLVNVFFGVPLPLSSFLMIIICVFTDLFLSLSLIM
EREEFDLLSLPPRNHKRDHLITLKIYVQAYLFTGFMETITAHSMFFFYYWKEAGIPVSSL
FFAFEKYTDGFYGYTEDQLTHFNAVGQSVYFVTLVILQWGNILAVRNRRLSIVQADPITE
KRRNPWLILSMVISLAIAIFVTEVPGIQSLFGTASVPIEFWLIPLPLAVGILCMDEIRKL
VVRLFPNGPVAKIAW
NT seq
3288 nt
NT seq
+upstream
nt +downstream
nt
atgcctgaagacacctccagttcggctgacgaagtactcgaaaaggaagccgaccgcgac
cttcgcatcgcatttgatgatgccgcccaccctagggggagggctgcggctgcagatcag
ggcaatcgcagagactctcgctccctgtcccgtcgaagatccatgagccgtgatggcatc
accacggctccctattccggcctcccgattacatatcgaaccctctctatccaggtggcc
gagtcccgtaaggttgagaccgactcttcggctgacatcaagtcaagcaagaaggacgac
gaggactactttacaaacttgacctttcatcagctccaggccgaccagctgtgtcagcaa
ctcaatgtttcccaatcatcgggtctttctgagagctctgctgccaacagactccagcga
gatggcggcaataccctgccaaagcccaagacgaactatctgaagaagatcttgatgtac
ctctttggcggcttctgttccgtcctctgggttggtgtcgttgtcttcttcatctgctgg
aggcccctgagcaaccccccttcccctaccaatcttgccctcgctatcctggtaattctg
gtcattatgcttcaggctggtttctctgccttccaagactggtcgacatcgagaaccatg
aagtccatcaccgacctgctgccagcagaagcgctggtcatgagagacgggcaattgaaa
aagatgccggccacgcaacttgttagtggagatgtcgttcatctcaaaattggcaacaag
gtacctgccgacatgcgtctcatcagccactctggagatattcgattcgaccgtgccgtt
ctcactggcgaatccgacgagattgagggcgccgttgacatgacggaccaaaacttcttg
gagagccgcaacattgccctcatgggcacgctggttgtgaacggcagcggtgtcggcgtc
gtcgtcttgactggtccccgatctgtcatgggtcgtattgccaaggccaccgcttctacc
gaggaacgtgctactctgattcagaaggaaatctggcggtttgtctacatcattgtagcg
ctgactgtttgcctggcgcttttgatcctcttcacctggctcggctggttgcgtcgcgac
cactatgactttatgaatgttgttgccatgctgaacaatgtcatgagctgtgtggtggcc
tttatccccgaaggcatgcccgtggccgttgctctgacgctcatgatggtggcgaggaag
atgaaggcggtcaatatcttgccaaagggtctttctacggttgaaaccctgggatgtgtc
agtgtcatctgctccgacaagactggtaccttgacccaaaacaaaatgcatgtcaactcg
gcatcgtttatcgacggaccgatcgagctggacgacttctaccgcaccgtcaacagcgac
aaggccgaagcaagctctaccagactgcttgcagctgcatctcactgcaacgatgccaca
ttcgaccctacaaccatgaacatgcccgtctccagccgcgaggtccaaggaaatgccacc
gatgccgctgttctccggcttgcagctaccgccaatggcggcgactttggcacggccatt
gtgcctcgtctgtcccagatcgccttcaactccaagaacaagtggatgctcacgttgcac
cgcaaggaagcagacagcgatggttcctcgggcgaataccaggttttcgtcaagggcgcg
ccggatgtcctgctaccaacgtgcaccaagtactggtccaagaagacaaactcggttcag
cccatggacgagactgcgcggtccgccttcaaaacgtaccaagacaagctctctcgcaac
gccgaacgtgtcattgttctttgcgagaagacccttactgcgaagaacgccgtgggcacc
aatgccttcagtgacgaggtcgctcttagtgccactgaggacctcaccattgttggaatt
cttggcatcatcgatcctgctcggcccgaaaccgcacatacagtggccgaatgcagacgt
gccggcgccagattcttcatggtcaccggcgactacggcctgactgccgccgctattgcc
cgcaacactggtattttcagcagtgagcgcgatcccgacaccatcgacaccatcaaaagc
gacaaggcgatttccgccgcggagctcgctaatgctcgaaagactggcgagcgacacagc
ctgttgctcgagggccagaatctgggcaatctggtgccagaagactgggacgtgatctgc
gagtatggagaaatcgtctttgccagaaccacgccggagcagaagctgcgcatcgtcgaa
gagttccgcaagcgcgacaatgtcgttgccgtcaccggtgacggtgtcaacgacgcgcct
gccctccgagcggccgacgttggcgtggccattgtcaccggcagcgatgttgccatcgag
gcggcggacctggtgctgctcgacagattcgactccatcatcgaggccatccgctggggc
aggctggtgttccagaatctccaaaaggtgattgcgtacctgctccccgccgggtcgtgg
tcggagatctggccggtgctggtcaacgtcttcttcggcgtgcctctcccgctgagctcg
ttcctcatgatcatcatctgcgtcttcaccgacctgttcctctcgctttccctcatcatg
gagcgcgaggagttcgacctgctgtccctacccccccgaaaccacaagagggaccatctc
atcacgctcaagatctacgtccaggcctacctcttcacgggcttcatggagaccatcacc
gcgcactccatgttcttcttctactactggaaggaggcgggcatccccgtcagcagcctg
ttctttgcctttgaaaagtacacggatggcttctacggctacacggaggatcagctgacg
catttcaacgccgtcgggcagagcgtctactttgtcaccctggtgatcctgcagtggggg
aacattctggcagtgcgcaaccgccgactgagcatcgtgcaggccgatcccatcacggag
aagaggcgcaacccttggctcattctgagcatggtgatttctctcgccattgcgattttc
gtcaccgaagtccccggcattcagtcgttgtttggcacagcgagcgttcccattgagttt
tggcttatcccccttcctttggccgtgggtattctctgcatggacgagattagaaaactg
gtggttcgactattccccaacggcccggtggctaagattgcttggtag
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