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ATP2A1  
    


    
      Official symbol:  ATP2A1
      Full name:  ATPase sarcoplasmic/endoplasmic reticulum Ca2+ transporting 1
      Location:  16p11.2
      Also known as:  SERCA1, ATP2A
      Entrez ID:  487
      Ensembl ID:  ENSG00000196296
      Summary:  This gene encodes one of the SERCA Ca(2+)-ATPases, which are intracellular pumps located in the sarcoplasmic or endoplasmic reticula of muscle cells. This enzyme catalyzes the hydrolysis of ATP coupled with the translocation of calcium from the cytosol to the sarcoplasmic reticulum lumen, and is involved in muscular excitation and contraction. Mutations in this gene cause some autosomal recessive forms of Brody disease, characterized by increasing impairment of muscular relaxation during exercise. Alternative splicing results in three transcript variants encoding different isoforms. [provided by RefSeq, Oct 2013]

    

    
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  Tissue specific distribution
    
 
  
 
   

    
  Overall distribution
    
  Tissue specific distribution
    
 
Gscore (Amp):  0.19  
Gscore (Del):  0.00  
 
Recurrently amplified in 1 cancer type(s)
   

    
  Overall distribution
    
  Tissue specific distribution
    
 
Mscore:  0.00  
 
   

    
  Overall
    
  Tissue specific
    
 
Total fusion occurrence:  1  
 
Fusions detected in 1 cancer type(s)
 
 

    
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  Tissue specific
    
     
   

    
      Functional class:  Transporter
      JensenLab PubMed score:  204.09  (Percentile rank: 81.92%)
      PubTator score:  131.09  (Percentile rank: 81.29%)
      Target development/druggability level:  TchemThese targets have activities in ChEMBL or DrugCentral that satisfy the activity thresholds detailed below.
      Tractability (small molecule):  Predicted TractableTargets with a predicted Ro5 druggable domain (druggable genome); Targets with a drugEBIlity score equal or greater than 0
      Tractability (antibody):  Predicted Tractable - Medium to low confidenceTargets with GO cell component terms plasma membrane or secreted with low or unknown confidence; Targets with predicted signal peptide and transmembrane domains; GO cell component - medium confidence; Human Protein Atlas - high confidence

    







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