Construction of A Lentiviral Vector Carrying CUEDC1 Gene and Its Effect on the Proliferation and Colony-formating Ability of MOLT-4 Cells.
	    		
		   		
		   			
		   		
	    	
    	- Author:
	        		
		        		
		        		
			        		Wan-Chuan ZHUANG
			        		
			        		
			        		
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			        		Qing-Yun WU
			        		
			        		
			        		
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			        		Fan-Jing MENG
			        		
			        		
			        		
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			        		Kai-Lin XU
			        		
			        		
			        		
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			        		Author Information
			        		
 - Publication Type:Journal Article
 - From: Journal of Experimental Hematology 2018;26(5):1257-1262
 - CountryChina
 - Language:Chinese
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		        	Abstract:
			       	
			       		
				        
				        	
OBJECTIVETo construct a lentiviral vector carrying human CUEDC1 gene, to establish leukemic cell line MOLT-4 stably expressing recombinant plasmid, to analyze the expression of CUEDC1 in MOLT-4 cells and to investigate its effect on the proliferation of MOLT-4 cells.
METHODSThe CUEDC1 gene was amplified by RT-PCR, and then was subcloned into the lentiviral vector pCDH to generate a lentiviral vector pCDH-CUEDC1. Recombinant lentivirus was generated by co-transfection of 3 plasmids, and transfected into MOLT-4 cells. The Real-time PCR and Western blot were respectively applied to detect the expression of CUEDC1 mRNA and protein, the CCK-8 and colony formation assay were used to evaluate the effect of CUEDC1 on proliferation of MOLT-4 cells.
RESULTSThe recombinant lentiviral vector pCDH-CUEDC1 had been constructed successfully. After infection of MOLT-4 cells with the lentivirus, the recombinant plasmid could stably up-regulate the expression of CUEDC1 and protein. The CCK-8 detection and colony formation assay showed that exogenous CUEDC1 could significantly promote cell growth and the colony formation of MOLT-4 cells.
CONCLUSIONThe recombinant lentiviral vector carrying human CUEDC1 has been successfully constructed, exogenous CUEDC1 can significantly promote cell growth and the colony formation of MOLT-4 cells.
 
            