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ATP6V0C  
    


    
      Official symbol:  ATP6V0C
      Full name:  ATPase H+ transporting V0 subunit c
      Location:  16p13.3
      Also known as:  VATL, ATPL, Vma3, ATP6C, ATP6L
      Entrez ID:  527
      Ensembl ID:  ENSG00000185883
      Summary:  This gene encodes a component of vacuolar ATPase (V-ATPase), a multisubunit enzyme that mediates acidification of eukaryotic intracellular organelles. V-ATPase dependent organelle acidification is necessary for such intracellular processes as protein sorting, zymogen activation, receptor-mediated endocytosis, and synaptic vesicle proton gradient generation. V-ATPase is composed of a cytosolic V1 domain and a transmembrane V0 domain. The V1 domain consists of three A and three B subunits, two G subunits plus the C, D, E, F, and H subunits. The V1 domain contains the ATP catalytic site. The V0 domain consists of five different subunits: a, c, c', c", and d. This gene encodes the V0 subunit c. Alternative splicing results in transcript variants. Pseudogenes have been identified on chromosomes 6 and 17. [provided by RefSeq, Nov 2010]

    

    
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  Tissue specific distribution
    
 
  
 
   

    
  Overall distribution
    
  Tissue specific distribution
    
 
Gscore (Amp):  0.00  
Gscore (Del):  0.00  
 
   

    
  Overall distribution
    
  Tissue specific distribution
    
 
Mscore:  0.00  
 
   

    
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  Tissue specific
    
 
Total fusion occurrence:  NA  
 
 
 

    
  Overall
    
  Tissue specific
    
   CRISPR: COMMON ESSENTIAL 
 RNAi: COMMON ESSENTIAL 
   
   

    
      Functional class:  Enzyme
      JensenLab PubMed score:  78.88  (Percentile rank: 69.09%)
      PubTator score:  21.26  (Percentile rank: 53.34%)
      Target development/druggability level:  TbioThese targets do not have known drug or small molecule activities that satisfy the activity thresholds detailed below AND satisfy one or more of the following criteria: 1) target is above the cutoff criteria for Tdark; 2) target is annotated with a Gene Ontology Molecular Function or Biological Process leaf term(s) with an Experimental Evidence code.
      Tractability (small molecule):  N/A
      Tractability (antibody):  Predicted Tractable - High confidenceTargets located in the plasma membrane; Targets with GO cell component terms plasma membrane or secreted

    







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