KEGG   Podospora pseudocomata: QC762_204620
Entry
QC762_204620      CDS       T09797                                 
Name
(RefSeq) uncharacterized protein
  KO
K01539  sodium/potassium-transporting ATPase subunit alpha [EC:7.2.2.13]
Organism
ppsd  Podospora pseudocomata
Pathway
ppsd04820  Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:ppsd00001]
 09140 Cellular Processes
  09142 Cell motility
   04820 Cytoskeleton in muscle cells
    QC762_204620
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:ppsd04147]
    QC762_204620
Enzymes [BR:ppsd01000]
 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
     QC762_204620
Exosome [BR:ppsd04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   QC762_204620
  Exosomal proteins of other body fluids (saliva and urine)
   QC762_204620
  Exosomal proteins of colorectal cancer cells
   QC762_204620
  Exosomal proteins of bladder cancer cells
   QC762_204620
SSDB
Motif
Pfam: E1-E2_ATPase Cation_ATPase_C Hydrolase Cation_ATPase Cation_ATPase_N HAD Hydrolase_3 S10_plectin
Other DBs
NCBI-GeneID: 87907260
NCBI-ProteinID: XP_062747168
LinkDB
Position
2
AA seq 1129 aa
MGKPGNKSRIRWQDNDVEAGRSASRPVQGPGLERTRSHGSMSIRSVRSNTGGGVDPSAAL
PIQYRTVSIDIDDYNRKDEVANKVSKAAATGTLFSLGHICGSGRLTICLMMTGLADLEWH
TLPVADVVNRWTTSLDQGLSQDQIRRRVTEYGKNTPSPPETHHFQQIMGYFFKGFGSVLL
VGSILVFVAWKPLGQPPAQANLALAIVLLAVFFIQAAFNMWQDWSSSRVMASIKNMIPEE
CLLIREGVQVSAMAADIVPGDVLLVKAGNKLPADVRFVQVSSDAKFDRSILTGESVPLAA
TVDATDENYLETKNIGLQGTHCSFGTCTGVVVATGNKTVFGRIAKLTNEPKKGMTPLERE
VLNFVYVICSIMVVMIIAVVVIWAAWLRTTYPDWISVPNLIVACVSVAVAFIPEGLPVAL
TASLTISANMMRKNKVLCKSLKTVETLGSVSVICSDKTGTLTENKMVVTDCALGGKEMTV
DGILDVAIAERLTNGDMASNSIDQLRSVAGLCNAGEFDAATRSLPVSERKIHGDATDQAI
LRFAEGLGPVSELKRCWATKFNLAFNSKNKFMIRVLGYTHPDGLSLALPTGTASVFEPGD
MLLTIKGAPEILMDRCTNFTGSSGVAMTLTPEVREKFNRIKNDWSAQGRRVLLLAHKALS
RRSFKSSPSSSAAFEAETLEQAKSGLTLVGLVAIVDPHRPEIPEVVKILRTAGIRMFMVT
GDFALTAQAIARECGIITNPDSVVANVTALSREPTKTKNHKDHTPSEEGDEELSKSIVLT
GPDLITLNNPQWDALVSSYNEVVFARTTPEQKLRIVRELQDRGHVVGMTGDGVNDAPALR
AADIGIAIGGGSDIAIEAADMVLLESFSSVVEAVRFGRVLFDNLKKTIAYLLPAGSFAEF
WPIMTNVAFGLPQILSSFLMIIICCFTDCLAATALAYEAPEADVLKRPPRRVGVDRLVDW
RLIVQSYGFVGVIETVVAFAMAYWFLEREGVKFGDLWFGFGRVPGGMSGEEVVARLNVAS
SVYFVTLVVVQWFNLLAVRTRRLSIFQHPPLFNKETRNYYLFPAVLFSLVMAFFWLYIPS
LQSVLGTAEVPVEYWFLPMSFGLGILLLDEGRKCMVRRYPGGFWGRVAW
NT seq 3390 nt   +upstreamnt  +downstreamnt
atgggtaaaccaggaaacaaatctcgcattcgatggcaggataacgacgttgaggccggt
cggtctgcgagccgaccggttcaaggtcctgggcttgagcgtactcgctctcatggctcc
atgtcaattcggagtgttcgttcgaataccggtggtggtgttgatccctctgcggcgctg
cctattcagtaccggactgtctccattgacattgatgattacaaccgcaaggatgaagtg
gccaacaaggtctcaaaggctgctgcgacaggtactttgttttctcttggtcacatttgc
ggttcgggaaggctgacgatatgtctgatgatgacaggccttgccgacctcgaatggcac
acccttcccgtagctgacgttgtcaatcgctggaccacctccctcgaccaaggcctctct
caagaccaaatcaggcgccgcgtcactgaatatggcaaaaacacgccctctcccccggag
acccaccacttccaacaaatcatgggctacttctttaagggcttcggttctgtcctcctc
gtcggttccatcctcgtcttcgttgcttggaagcccctgggacaacccccggcccaggcc
aacttggccttggctatcgtcttgcttgctgtattcttcattcaggccgccttcaacatg
tggcaggactggtcgtcgtctcgggtcatggcttccatcaagaatatgattcctgaggag
tgtcttttgattcgggaaggtgttcaggtttcggccatggctgctgatattgttcctgga
gatgtgttgctggtcaaggcggggaataagttgccggcggatgtgaggtttgtgcaggtg
tcgagtgatgctaagtttgatcggtcgatccttactggtgaatcggtccctcttgctgcc
actgttgatgctaccgatgagaactacctcgagaccaagaacattggtttgcagggcacc
cattgctcgtttggtacttgcactggagttgttgtcgccactggcaacaagacggtgttt
ggacggattgccaagttgaccaatgagcctaagaaggggatgacgcctcttgagagggag
gttctcaactttgtctatgtcatttgttccatcatggtggttatgatcattgcggttgtt
gttatttgggccgcctggctgaggactacgtatccagactggatcagcgtccctaatctg
atcgttgcttgtgtgtcggttgctgtggctttcattcctgaaggcttgccagtagcgttg
acggccagtctgacgatcagtgcgaatatgatgcggaagaacaaggtcttgtgcaagtcg
ttgaagactgttgagacgcttgggtctgtgtctgtcatttgttcggacaagactgggaca
ctgacagaaaacaaaatggtggtcacagactgtgcccttggtggcaaggaaatgactgtg
gatggcatcctcgatgttgccatcgccgagcgacttaccaacggtgacatggcgagcaac
tccattgaccagctgcgcagcgttgctgggctttgcaacgctggagagtttgacgctgcc
acgaggagcctgcccgttagcgaaagaaagattcacggtgacgctactgaccaagccatt
ctgcggtttgcagaaggcttgggtcctgtgtctgagctcaagcgctgttgggctacgaag
ttcaacctcgccttcaacagcaagaacaagtttatgattcgcgttctgggatacacccat
cctgatgggctgagcttggctttgccaactggaacggcgtctgtctttgagcctggcgat
atgctcttgactatcaagggagctccagagatattgatggaccgttgtaccaactttact
ggtagttcgggcgttgccatgaccttgactcctgaagttagagagaagttcaaccgcatc
aagaatgattggtctgcacaagggcgtcgggtattgcttctggcccacaaagcactctcc
aggcgctcctttaagtcgtctccctcttcctcggctgcctttgaggcagagactttggag
caagccaaatctggactcacgctcgtgggcctggtcgctattgttgaccctcaccggcct
gagatcccagaggtggtcaagattcttcggacggctggcattcgcatgtttatggtcact
ggagactttgccttgacggcccaagctatcgctagagagtgcggcatcatcaccaaccca
gacagcgttgtcgctaacgtcaccgctctgtcccgggaacccaccaaaacaaaaaatcac
aaggatcacactccgtctgaggaaggcgacgaggagctctcaaagtccatcgtgctgacc
ggcccagatctcatcaccctcaacaacccccaatgggacgctctcgtatcctcctacaac
gaagtcgtctttgccagaacaacccccgagcaaaaactgcgaatcgtccgtgagctccag
gaccgcggtcacgtcgtgggcatgacaggcgacggcgttaacgacgcccccgccctccgc
gcagcagacattggcattgccatcggcggcgggagcgacattgccattgaggccgctgac
atggtccttctcgagtccttctccagcgtggtcgaagcggtccgctttggtcgagtgctg
tttgacaacctcaagaaaaccatcgcgtacctcctccccgctggaagttttgctgagttc
tggcccatcatgacaaacgtcgcttttgggctgccgcagattttgagctcgtttttgatg
atcattatttgctgttttacggattgtctggctgctaccgcgctggcgtatgaagctccc
gaggcggatgttttgaagaggcctccgagacgggtcggggtggatagattggttgattgg
aggttgattgtgcagagttatgggtttgtgggtgtgattgagacggtggtggcctttgcg
atggcgtattggtttttggagagggagggggtcaagtttggggatttgtggtttgggttc
gggagggtgccggggggtatgtcgggagaggaggttgtagcgaggttgaatgtggctagt
tcggtgtactttgtgacgttggttgtggtgcaatggttcaatttgttggcggttaggacg
agaaggttgagtatttttcagcatccgccgttgtttaacaaggagacgaggaactactac
ttgtttccggcggtgttgttttcgttggtgatggcgtttttttggttgtatattccgagt
ttgcagagtgttttggggacggcggaggtgccggtggagtattggttcttgccaatgagt
ttcgggttgggcattttgttgttggatgaggggaggaagtgcatggtgaggaggtatcct
ggggggttttgggggagggtagcttggtga

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