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EFNB3  
    


    
      Official symbol:  EFNB3
      Full name:  ephrin B3
      Location:  17p13.1
      Also known as:  EPLG8, LERK-8
      Entrez ID:  1949
      Ensembl ID:  ENSG00000108947
      Summary:  EFNB3, a member of the ephrin gene family, is important in brain development as well as in its maintenance. Moreover, since levels of EFNB3 expression were particularly high in several forebrain subregions compared to other brain subregions, it may play a pivotal role in forebrain function. The EPH and EPH-related receptors comprise the largest subfamily of receptor protein-tyrosine kinases and have been implicated in mediating developmental events, particularly in the nervous system. EPH Receptors typically have a single kinase domain and an extracellular region containing a Cys-rich domain and 2 fibronectin type III repeats. The ephrin ligands and receptors have been named by the Eph Nomenclature Committee (1997). Based on their structures and sequence relationships, ephrins are divided into the ephrin-A (EFNA) class, which are anchored to the membrane by a glycosylphosphatidylinositol linkage, and the ephrin-B (EFNB) class, which are transmembrane proteins. The Eph family of receptors are similarly divided into 2 groups based on the similarity of their extracellular domain sequences and their affinities for binding ephrin-A and ephrin-B ligands. [provided by RefSeq, Jul 2008]

    

    
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Gscore (Amp):  0.00  
Gscore (Del):  0.00  
 
   

    
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  Tissue specific distribution
    
 
Mscore:  0.00  
 
   

    
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Total fusion occurrence:  0  
 
 
 

    
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      Functional class:  Not specified
      JensenLab PubMed score:  64.75  (Percentile rank: 66.34%)
      PubTator score:  34.53  (Percentile rank: 61.86%)
      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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