Biological process  Metabolism ; Energy pathways
 Molecular function  ATPase activity
 
Protein   ATPase, H+ transporting, lysosomal V0 subunit a2  Gene symbol   ATP6V0A2
 
 Cellular component  
     
 
Component
Early endosome
Integral to membrane
Nucleus
 
   
 
Experimental evidence   
  Total number of studies : 2    
 
Peptide sequence Method Platform  Sample  Reference
Mass spectrometry Plasma Liu et al. 2007
Mass spectrometry LTQ linear ion trap Plasma Jin et al. 2005
 
   
 
 Multiple reaction monitoring data  
     
 
Peptide sequence MH+ Sample Number of studies Reference
Data not present
 
   
 
  Protein concentration    
     
 
Protein concentration Method Sample
Reference
Data not present
 
   
 
  Extracellular vesicle proteins    
     
 
Sample Isolation  Experimental method Vesiclepedia accession Reference
Data not present
 
   
 
 Architecture  
     
 
Domains Motifs
TM   408 - 430
TM   447 - 469
TM   555 - 577
TM   584 - 606
TM   652 - 674
TM   785 - 807
CC   91 - 128
SP   1 - 22
 
   
 
 External links  
     
 
HPRD UniProt NetPath 
16521  Q9Y487  NetPath_M23545 
 
   
 
 
 Protein sequence  NP_036595.2
     
   
    MGSLFRSETM CLAQLFLQSG TAYECLSALG EKGLVQFRDL NQNVSSFQRK FVGEVKRCEE LERILVYLVQ EINRADIPLP EGEASPPAPP LKQVLEMQEQ LQKLEVELRE VTKNKEKLRK
NLLELIEYTH MLRVTKTFVK RNVEFEPTYE EFPSLESDSL LDYSCMQRLG AKLGFVSGLI NQGKVEAFEK MLWRVCKGYT IVSYAELDES LEDPETGEVI KWYVFLISFW GEQIGHKVKK
ICDCYHCHVY PYPNTAEERR EIQEGLNTRI QDLYTVLHKT EDYLRQVLCK AAESVYSRVI QVKKMKAIYH MLNMCSFDVT NKCLIAEVWC PEADLQDLRR ALEEGSRESG ATIPSFMNII
PTKETPPTRI RTNKFTEGFQ NIVDAYGVGS YREVNPALFT IITFPFLFAV MFGDFGHGFV MFLFALLLVL NENHPRLNQS QEIMRMFFNG RYILLLMGLF SVYTGLIYND CFSKSVNLFG
SGWNVSAMYS SSHPPAEHKK MVLWNDSVVR HNSILQLDPS IPGVFRGPYP LGIDPIWNLA TNRLTFLNSF KMKMSVILGI IHMTFGVILG IFNHLHFRKK FNIYLVSIPE LLFMLCIFGY
LIFMIFYKWL VFSAETSRVA PSILIEFINM FLFPASKTSG LYTGQEYVQR VLLVVTALSV PVLFLGKPLF LLWLHNGRSC FGVNRSGYTL IRKDSEEEVS LLGSQDIEEG NHQVEDGCRE
MACEEFNFGE ILMTQVIHSI EYCLGCISNT ASYLRLWALS LAHAQLSDVL WAMLMRVGLR VDTTYGVLLL LPVIALFAVL TIFILLIMEG LSAFLHAIRL HWVEFQNKFY VGAGTKFVPF
SFSLLSSKFN NDDSVA