FIGURE
            Fig. S6
- ID
 - ZDB-FIG-180425-12
 - Publication
 - Singh et al., 2017 - Etv2-miR-130a-Jarid2 cascade regulates vascular patterning during embryogenesis
 - Other Figures
 - All Figure Page
 - Back to All Figure Page
 
                
                    
                        Fig. S6
                    
                    
                
                
            
        
        
    
        
            
            
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 Jarid2 over-expression inhibits vascular development. A, Tube formation assay using HUVEC cells following transfection with the vector and Jarid2 constructs, respectively. White arrow indicates the defective tube formation B, Quantitative analysis of the number of vascular tubes per field at 10x magnigfication. Note the decreased number of tubes following over-expression of Jarid2. C, Quantitative analysis of tube formation following co-injection of Jarid2 and miR-130a mimics. Note the restoration of tube formation upon co-expression of Jarid2 and miR-130a mimics. Error bars indicate SEM (*p<0.05).  | 
    
                
                    
                        Expression Data
                    
                    
                
                
            
        
        
    
        
            
            
            
            
    
    
                
                    
                        Expression Detail
                    
                    
                
                
            
        
        
    
        
            
                
            
        
    
    
    
                
                    
                        Antibody Labeling
                    
                    
                
                
            
        
        
    
        
            
                
            
        
    
    
    
                
                    
                        Phenotype Data
                    
                    
                
                
            
        
        
    
        
            
            
            
            
    
    
                
                    
                        Phenotype Detail
                    
                    
                
                
            
        
        
    
        
            
                
            
        
    
    
    
                
                    
                        Acknowledgments
                    
                    
                
                
            
        
        
    
        
            
            
                
                    
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