KEGG   Paramecium tetraurelia: GSPATT00021041001
Entry
GSPATT00021041001 CDS       T01055                                 
Name
(RefSeq) hypothetical protein
  KO
K01539  sodium/potassium-transporting ATPase subunit alpha [EC:7.2.2.13]
Organism
ptm  Paramecium tetraurelia
Pathway
ptm04820  Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:ptm00001]
 09140 Cellular Processes
  09142 Cell motility
   04820 Cytoskeleton in muscle cells
    GSPATT00021041001
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:ptm04147]
    GSPATT00021041001
Enzymes [BR:ptm01000]
 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
     GSPATT00021041001
Exosome [BR:ptm04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   GSPATT00021041001
  Exosomal proteins of other body fluids (saliva and urine)
   GSPATT00021041001
  Exosomal proteins of colorectal cancer cells
   GSPATT00021041001
  Exosomal proteins of bladder cancer cells
   GSPATT00021041001
SSDB
Motif
Pfam: Cation_ATPase_C E1-E2_ATPase Cation_ATPase Hydrolase DctQ DUF3846
Other DBs
NCBI-GeneID: 5040581
NCBI-ProteinID: XP_001454796
Genoscope: GSPATT00021041001
UniProt: A0DWI2
LinkDB
Position
undetermined
AA seq 917 aa
MFIKELNLFAFDLIIATIISISLAIYGSQNNLEFSGEEIITSCLLLIVITITFAMGYQQR
KKSQYAIEKDNEQTITVYRDGKIQHLLIQNLVSGDICVIKEGLVIYCDMRVLESSDLQIQ
MNQDITQAIKGSQIFCGSLIRCGFGKGVVIKTGSSTTIAQIQKRQGSKLLQKQLILFQQI
MTLIALFVIVLVIIWSAVMTEKDTSEVFAYGFRVVEQVIIAIVPVGLLVIVTISFQMAIR
RLAKLRFLIKDAESIERLSEINCLCIGLNEVITSKNYTFNSFNDCKQLSYECRGLNSVHL
QYCAILTCNHGNLDGTEKSIMDCFKDEDTDGLIKNTKYYVNGIQYRLPFNSSKKYSLSIV
EQGNKYFVYIKGAPEVIWSYCNKTLFGKIDIKQTQLFNDQLVNQCSKGLRSIGFAYLEIE
NEQDLKINENDYEFNKQNFIYLGTLYLNNSLNEQATPILEKLSQQNIKVVIITGEHPETA
RVICKNTGNYSNPTIIEGHQLYLHVDDQQEVTRLSSVENKLGNWCSQQEIVFARTSPEQK
LSIVKALQQLNYRVAITGEGLTDLGAFRQADISISKKHGSLQMIINSSDLILTSSKQTFL
DSYQAILEAKRAVNNVTKSIMLCLSSNTAMILALFVYCFLGTPLPFSQNLMLLTSISVDL
ILGISLAREELEYRIPNRTNLFLFAILIIGCIEAGGGLMASFSAYRYFGFNLQNLYFTRF
ASAYPVGDQDIYNPQSNTLGNSNLQDNCQYYGEMQNYQWSSPNNTIDQRLIFVECGTCSD
MQKQNGYLTDCWNTKYEYPNCLSNSQYCYTAKSSEYASTSFYIVLVLSQCINYFALRTLV
KSYNSTRINTLALYGLTISLIILPIIVYVPGIQQVFQTVNMPWELLGSAGLPFCLLLLTI
AEVIKWLLRTYVGFQIL
NT seq 2754 nt   +upstreamnt  +downstreamnt
atgtttataaaagaattgaatttatttgcctttgatctaattattgcaacaataatttcg
ataagcttagcaatttatggaagtcaaaacaaccttgaatttagtggtgaagaaataatt
acatcttgtttattgttaatagtaataacgataacttttgcgatgggatatcaacaaaga
aagaaatcctagtatgcaatagagaaagacaatgaataaacaatcactgtatacagagat
gggaaaatataacatcttttgattcagaatctggtttcaggagatatttgtgtaatcaag
gagggtctagtaatctattgtgacatgagagtattggaatcctcggatttataaatatag
atgaatcaagatataacctaagcaataaaagggtcatagatattttgtggatcactaata
agatgtggatttggaaagggagtagtaattaagactggatcaagtactacgattgcttaa
attcaaaagagataggggagtaagttattgcagaaatagttgattttgttctaataaata
atgactctaatagcattatttgtgatagtattggtaataatttggagtgccgttatgact
gaaaaggatacatctgaggtgtttgcatatggatttagagtggttgaataagtgatcatt
gcaatagttccagttggattattagtgattgttacgatctcattttaaatggcaattaga
agattagccaaacttagattcttgattaaggatgctgaaagtattgagagattaagtgaa
atcaattgtttatgtattggattaaatgaagtaatcactagtaagaattacacattcaat
tcattcaatgattgtaagtaactatcatatgaatgtcgtggattaaactctgttcacctc
cagtattgtgcaatactgacttgtaatcatggaaatttggatggaacagaaaagagcata
atggattgttttaaagatgaggatactgatggtttaattaaaaatactaaatactatgtg
aatggcattcaatatcgtttgccattcaatagcagcaagaaatattcattatctattgtg
gaatagggaaacaaatattttgtttacatcaagggagctcctgaagtaatatggagttac
tgtaataagactctatttggcaagattgatatcaaatagactcaattatttaatgattaa
ttagtgaattaatgttcaaagggacttagaagcataggattcgcttatttagaaattgaa
aacgaataagatttgaaaattaatgaaaatgattatgaattcaacaaataaaacttcatc
tatttaggcactttgtatttaaacaacagtctcaatgaataagctactcctatcctagag
aaactatcacaataaaatattaaggtcgtgatcatcactggagaacacccagaaactgca
agagtcatatgcaaaaatacagggaattacagtaatccaaccatcatagaaggtcattag
ttgtatctacatgtcgatgatcaataggaagttactagattaagttctgttgaaaacaaa
ttaggaaattggtgttcctaataagaaatcgtatttgctcgaacatccccagaacagaaa
ttaagcattgtcaaggctctataacaattaaattatagagttgccatcactggagaagga
ttaactgatttaggagcatttagataggctgacatcagtatcagtaaaaaacatggatca
ttacaaatgattatcaattctagtgatttgatccttacttccagtaaataaacttttctt
gatagctattaagcaatattggaagcaaaaagagcagtcaataatgttactaaatctatt
atgctttgtttatcatcaaatacagccatgatcttagctttattcgtctattgttttctc
ggaactcccttacccttttcacaaaaccttatgttattaactagcatttccgttgatttg
attcttggaatcagtttagctagagaagagttagaatacagaattcccaatagaaccaat
ctcttcctctttgctattttgattattggttgtattgaggcaggtggaggacttatggca
agtttcagtgcttatcgttattttgggtttaatttatagaatctctatttcacaagattt
gctagtgcctatcctgttggcgatcaagatatttataatccataaagtaatactctaggt
aattcaaatctacaggataattgctaatattatggtgagatgtagaattatcaatggagt
tctcctaataatactattgatcagaggttaatatttgttgaatgtggcacctgttcagat
atgtaaaaacaaaatgggtatttaactgactgctggaatacaaaatatgagtaccctaat
tgtttaagcaactcttaatactgttatactgccaaatcaagtgaatatgcatcgacatcc
ttctatatagtcttggtattatcgtaatgtatcaattactttgcattaagaactctagtt
aaatcttataattctactcgaattaatactttagccttatatggattaacgatatcatta
attatattaccaattattgtttatgttccaggaatttaataggttttttagacagttaat
atgccttgggaattattaggttcagcaggccttccattttgtttgcttttgctaactata
gctgaagtaataaaatggctactaagaacatatgttggattttaaatattatga

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