Egr-1 promoter regulating effect on granulocyte-macrophage colony-stimulating factor (GM-CSF) gene expression induced by doxorubicin and ionizing radiation
	    		
		   		
		   			
		   		
	    	
    	 
    	10.3760/cma.j.issn.0254-5098.2009.03.001
   		
        
        	
        		- VernacularTitle:辐射与化疗诱导Egr-1启动子调控GM-CSF基因表达的实验研究
 
        	
        	
        	
        		- Author:
	        		
		        		
		        		
			        		Nan DU
			        		
			        		;
		        		
		        		
		        		
			        		Xuetao PEI
			        		
			        		;
		        		
		        		
		        		
			        		Jinming ZHOU
			        		
			        		;
		        		
		        		
		        		
			        		Junzhong SUN
			        		
			        		;
		        		
		        		
		        		
			        		Yan FU
			        		
			        		;
		        		
		        		
		        		
			        		Hui ZHAO
			        		
			        		
		        		
		        		
		        		
		        		
		        		
			        		
			        		
		        		
	        		
        		 
        	
        	
        	
        		- Publication Type:Journal Article
 
        	
        	
        		- Keywords:
        			
	        			
	        				
	        				
			        		
				        		Early growth response-1;
			        		
			        		
			        		
				        		Ionizing radiation;
			        		
			        		
			        		
				        		Doxorubicin;
			        		
			        		
			        		
				        		Granulocyte-maerophagecolony-stimulating factor;
			        		
			        		
			        		
				        		Radical oxygen intermediates
			        		
			        		
	        			
        			
        		
 
        	
            
            
            	- From:
	            		
	            			Chinese Journal of Radiological Medicine and Protection
	            		
	            		 2009;29(3):249-252
	            	
            	
 
            
            
            	- CountryChina
 
            
            
            	- Language:Chinese
 
            
            
            	- 
		        	Abstract:
			       	
			       		
				        
				        	Objective To explore the regulating effects of Egr-1 promoter activated by ionizing radiation (IR) and doxorubicin (ADM) on the expression of granulocyte-macrophage colony-stimulating factor (GM-CSF) genes. Methods The human GM-CSF cDNA and enhanced green fluorescent protein (EGFP) cDNA were linked together with IRES(internal ribosome entry site) and then inserted into the expression vector pCIneo under control of the Egr-1 promoter(Egr-EG). The vector was transferred into human bone marrow stromal cell line HFCL by liposome transfection. And the cells were exposure to ADM and IR. The activity of EGFP in HFCL/EG cells were detected by FACS. The effect of N-acetylcysteine on the expression of EGFP following exposure to ADM and IR was examined. The amounts of GM-CSF in HFCL/EG after chemotherapy or radiation were measured with ELISA. The effects of GM-CSF in HFCL/EG cultural supernatants on expansion of CFU-GM derived from cord blood were also studied. RT-PCR analysis for the expression of GM-CSF mRNA in HFCL/EG after exposure to ADM or IR. Results The percentage of EGFP+ HFCL/EG cells exposed to ADM and IR was increased compared with non-treatment group (1.2 % and 15.2 % vs 18.2 %, t = 5.11, P < 0.01). The levels of secreted GM-CSF in HFCL/EG cells exposed to ADM and IR was increased (P < 0.01), but no difference between ADM group and IR group (P 0.05). The expression of EGFP by HFCL/EG treated with ADM and IR was significantly decreased by N-acetylcysteine. The effects of GM-CSF in HFCL/EG cultural supernatants on expansion of CFU-GM in ADM group and IR group were significantly higher than that in HFCL group and non-treatment group. However, The CFU-GM count of IR group was higher than that of ADM group. The expression of GM-CSF mRNA in HFCL/EG cells exposed to ADM and IR was significantly increased(t = 4.37, P < 0.01). Conclusions GM-CSF gene expression regulated by Egr-1 promoter induced by ADM and IR could help the recovery from hematopoietic injury.