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Construction and identification of eukaryotic eukaryotic expression plasmid pcdna3.1-bace and its transient expression in cells
作者姓名:Huilin Gong  Guanjun Zhang  Weijiang Dong
作者单位:[1]Department of Pathology of the First Affiliated Hospital xi 'an Jiaotong University school of Medicine, Shanxi 710061 ,China [2]Department of Anatomy and Histology & Embryology, Xi 'an Jiaotong University School of Medicine, Shanxi 710061, China
摘    要:Objective: To generate eukaryotic expression vector of pcDNA3.1-BACE and obtain its transient expression in COS-7 cells and high expression in the neuroblastoma SK-N-SH cells. Methods: A 1503 bp cDNA fragment was amplified from the total RNA of human neuroblastoma by RT-PCR method and cloned into plasmid pcDNA3.1. The vector was identified by digestion with restriction enzymes BamHI and XhoI and sequenced by Sanger-dideoxy:mediated chain termination. The expression of BACE gene was detected by immunocytochemistry method. Results: The results showed that the cDNA fragment included 1503 bp total coding region. The recombinant eukaryotic cell expression vector of pcDNA3.1-BACE was constructed successfully, and the sequence of insert was identical to the published sequence. The COS-7 cells and the neuroblastoma SK-N-SH cells transfected with the pcDNA3.1-BACE plasmid expressed high level of BACE protein in cytoplasm. Conclusion: The recombinant plasmid pcDNA3.1-BACE can provide very useful tool for researching the mason of Alzheimer's disease and lays the important foundation for preventing the AD laterly.

关 键 词:β-site  APP  cleaving  enzyme
收稿时间:2006-09-29

Construction and identification of eukaryotic eukaryotic expression plasmid pcdna3.1-bace and its transient expression in cells
Huilin Gong,Guanjun Zhang,Weijiang Dong.Construction and identification of eukaryotic eukaryotic expression plasmid pcdna3.1-bace and its transient expression in cells[J].Acta Universitatis Medicinalis Nanjing,2006,20(3):176-179.
Authors:Huilin Gong  Guanjun Zhang  Weijiang Dong
Abstract:Objective: To generate eukaryotic expression vector of pcDNA3.1-BACE and obtain its transient expression in COS-7 cells and high expression in the neuroblastoma SK-N-SH cells. Methods: A 1503 bp cDNA fragment was amplified from the total RNA of human neuroblastoma by RT-PCR method and cloned into plasmid pcDNA3.1. The vector was identified by digestion with restriction enzymes BamHI and XhoI and sequenced by Sanger-dideoxy-mediated chain termination. The expression of BACE gene was detected by immunocytochemistry method. Results: The results showed that the cDNA fragment included 1503 bp total coding region. The recombinant eukaryotic cell expression vector of pcDNA3.1-BACE was constructed successfully, and the sequence of insert was identical to the published sequence. The COS-7 cells and the neuroblastoma SK-N-SH cells transfected with the pcDNA3.1-BACE plasmid expressed high level of BACE protein in cytoplasm. Conclusion: The recombinant plasmid pcDNA3.1-BACE can provide very useful tool for researching the reason of Alzheimer's disease and lays the important foundation for preventing the AD laterly.
Keywords:gene cloning  the alzheimer's disease
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