PUBLICATION
            Regulation of the lmo2 promoter during hematopoietic and vascular development in zebrafish
- Authors
 - Zhu, H., Traver, D., Davidson, A.J., Dibiase, A., Thisse, C., Thisse, B., Nimer, S., and Zon, L.I.
 - ID
 - ZDB-PUB-050518-14
 - Date
 - 2005
 - Source
 - Developmental Biology 281(2): 256-269 (Journal)
 - Registered Authors
 - Davidson, Alan, Thisse, Bernard, Thisse, Christine, Traver, David, Zon, Leonard I.
 - Keywords
 - Hematopoiesis; Vasculogenesis; Mesoderm; Transgenic; Zebrafish
 - MeSH Terms
 - 
    
        
        
            
                
- LIM Domain Proteins
 - Blood Vessels/embryology
 - Blood Vessels/metabolism
 - Cell Differentiation
 - Animals
 - Transcription Factors
 - Neovascularization, Physiologic/physiology*
 - Zebrafish/embryology*
 - Zebrafish/genetics
 - Proto-Oncogene Protein c-ets-1/biosynthesis
 - Hematopoietic Stem Cells/physiology
 - Base Sequence
 - Hematopoietic System/cytology
 - Hematopoietic System/embryology*
 - Hematopoietic System/metabolism
 - Metalloproteins/biosynthesis*
 - Metalloproteins/genetics
 - Promoter Regions, Genetic
 - DNA-Binding Proteins/biosynthesis*
 - DNA-Binding Proteins/genetics
 - Zebrafish Proteins
 - Erythrocytes/metabolism
 - Erythrocytes/physiology
 - Animals, Genetically Modified
 - Molecular Sequence Data
 
 - PubMed
 - 15893977 Full text @ Dev. Biol.
 
            Citation
        
        
            Zhu, H., Traver, D., Davidson, A.J., Dibiase, A., Thisse, C., Thisse, B., Nimer, S., and Zon, L.I. (2005) Regulation of the lmo2 promoter during hematopoietic and vascular development in zebrafish. Developmental Biology. 281(2):256-269.
        
    
                
                    
                        Abstract
                    
                    
                
                
            
        
        
    
        
            
            
 
    
    
        
    
    
    
        
                The Lmo2 transcription factor, a T-cell oncoprotein, is required for both hematopoiesis and angiogenesis. To investigate the fate of lmo2-expressing cells and the transcriptional regulation of lmo2 in vivo, we generated stable transgenic zebrafish that express green fluorescent protein (EGFP) or DsRed under the control of an lmo2 promoter. A 2.5-kb fragment contains the cis-regulatory elements required to recapitulate endogenous lmo2 expression in embryonic hematopoietic and vascular tissues. We further characterized embryonic Lmo2+ cells through transplantation into vlad tepes (vlt), an erythropoietic mutant. These Lmo2+ primitive wave donor cells differentiated into circulating hematopoietic cells and extended the life span of vlt recipients, but did not demonstrate long-term repopulation of the erythroid lineage. Promoter analysis identified a 174-bp proximal promoter that was sufficient to recapitulate lmo2 expression. This element contains critical ETS-binding sites conserved between zebrafish and pufferfish. Furthermore, we show that ets1 is coexpressed with lmo2, and overexpression experiments indicate that ets1 can activate the lmo2 promoter through this element. Our studies elucidate the transcriptional regulation of this key transcription factor, and provide a transgenic system for the functional analysis of blood and blood vessels in zebrafish.
            
    
        
        
    
    
    
                
                    
                        Genes / Markers
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Expression
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Phenotype
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Mutations / Transgenics
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Human Disease / Model
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Sequence Targeting Reagents
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Fish
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Orthology
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Engineered Foreign Genes
                    
                    
                
                
            
        
        
    
        
            
            
        
        
    
    
    
                
                    
                        Mapping