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腺病毒介导PDCD5基因转移促进依托泊甙诱导的K562细胞凋亡

Adenovirus-mediated PDCD5 Gene Transfer Sensitizes Apoptosis of K562 Cells Induced by Etoposide

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【作者】 阮国瑞陈珊珊常艳李金兰秦亚溱李玲娣郝乐付家瑜刘艳荣黄晓军

【Author】 RUAN Guo-Rui, CHEN Shan-Shan, CHANG Yan, LI Jin-Lan, QIN Ya-Zhen, LI Ling-Di, HAO Le, FU Jia-Yu, LIU Yan-Rong, HUANG Xiao-JunInstitute of Hematology and People’s Hospital, Peking University, Beijing 100044, China

【机构】 北京大学人民医院、血液病研究所北京大学人民医院、血液病研究所 北京100044北京100044

【摘要】 本研究观察程序性细胞死亡5基因(programmed cell death 5,PDCD5)重组腺病毒转染K562细胞后对化疗药物依托泊甙的增敏作用。利用AdMaxTM腺病毒载体包装系统,通过同源重组方法构建Ad-PDCD5重组腺病毒及对照腺病毒Ad-null及Ad-eGFP;用不同感染复数将Ad-eGFP、Ad-null或Ad-PDCD5转染人白血病细胞系,实时定量PCR检测PDCD5mRNA的相对表达水平;利用MTT法及Annexin-V-FITC/PI双染色流式细胞术观察依托泊甙对转染后K562细胞增殖与凋亡的影响。结果表明:Ad-eGFP腺病毒对白血病细胞系K562、Jurkat及CEM的转染效率可达60%-86%。Ad-PDCD5重组腺病毒能梯度增加K562细胞PDCD5 mRNA的相对表达水平,腺病毒介导的PDCD5基因转移促进依托泊甙诱导的K562细胞凋亡。结论:PDCD5重组腺病毒可能成为化疗药物的增敏剂。

【Abstract】 This study was purposed to investigate the effect of adenovirus-mediated transfer of PDCD5 gene on apoptosis of K562 cells induced by etoposide. Recombinant adenovirus PDCD5 (Ad-PDCD5), control vectors Ad-null and Ad-eGFP were constructed by AdMaxTM vector system respectively. After K562 cells were transfected by Ad-PDCD5, Ad-null or Ad-eGFP with different multiplicity of infection (MOI), the expression level of the PDCD5 gene was examined by RQ-RT-PCR assay. The effects of etoposide in combination with Ad-PDCD5 on the proliferation and apoptosis of K562 cells were measured by using MTT assay and flow cytometry with Annexin-V-FITC/PI dual labeling technique, respectively. The results showed that the transfection efficiencies of Ad-eGFP in K562, Jurkat and CEM cells ranged from 60% to 86%. Expression level of PDCD5 gene in K562 cells was evidently increased following transfection with Ad-PDCD5. The Ad-PDCD5 synergistically enhanced the apoptotic percentage of K562 cells induced by VP-16, as compared with that of Ad-null+VP16 and VP-16 alone respectively. It is concluded that Ad-PDCD5 may be a potential agent for enhancing the chemotherapy effect.

【基金】 国家自然科学基金(编号30370590);"十五""211工程"北京大学人类功能基因和疾病基因学科群(编号215);国家科技部"功能基因组与生物芯片"重大专项(编号2002BA711A01-01)资助项目
  • 【文献出处】 中国实验血液学杂志 ,Journal of Experimental Hematology , 编辑部邮箱 ,2007年05期
  • 【分类号】R733.7
  • 【被引频次】28
  • 【下载频次】278
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