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不同修饰型反义寡核苷酸抑制癌基因表达生物学效应的初步观察
引用本文:韩玲,杨渝珍,陈春莲,唐玉珠. 不同修饰型反义寡核苷酸抑制癌基因表达生物学效应的初步观察[J]. 华中科技大学学报(医学版), 1999, 0(1)
作者姓名:韩玲  杨渝珍  陈春莲  唐玉珠
作者单位:同济医科大学实验医学研究中心分子生物学研究室,同济医科大学附属同济医院病理科,同济医科大学附属协和医院儿科分子遗传室
摘    要:比较了两种不同的反义寡核苷酸抑制HL-60细胞c-myc癌基因表达的效应。二者有相同的碱基序列,但有不同的修饰方式,即全硫代修饰及卟啉修饰;另外还合成了两种非修饰型的反义和错义寡核苷酸作为对照。MTT细胞增殖实验、c-mycmRNA的Dotblot检测、c-myc蛋白的免疫组化检测等结果显示卟啉修饰的寡核苷酸除了具有明显的的特异性抑制基因表达的效果外,还伴有细胞裂解效应

关 键 词:反义寡核苷酸;癌基因;化学修饰

Observation of Inhibitory Effect of Different Modified Type Antisense Oligonucleotides on Gene Expression
Han Ling ,Yang Yuzhen ,Chen Chunlian et al. Observation of Inhibitory Effect of Different Modified Type Antisense Oligonucleotides on Gene Expression[J]. Journal of Huazhong University of Science and Technology(Health Sciences), 1999, 0(1)
Authors:Han Ling   Yang Yuzhen   Chen Chunlian et al
Affiliation:Han Ling 1,Yang Yuzhen 1,Chen Chunlian 2 et al 1 Department of Molecular Biology,Research Center of Experimental Medicine,Tongji Medical University,Wuhan 430030 2 Department of Pathology,Tongji Hospital,T
Abstract:Two different modified type antisense oligonucleotides complemetary to c myc mRNA were compared in inhibitory effect on gene targeted expression and cell proliferation One was the phosphorothioate oligonucleotide(S O) and the other contained a porphyrin group(P O) At the same time,a mis sense oligomer ( M O ) and an anti sense oligomer(A O) as the controls were also synthesized Human acute promyelocyte leukemia cell line (HL 60), which can express high level of c myc oncoprotein, was chosen as the target cell The above four oligomers were incubated with HL 60 cells for 4, 24, 48,72 h respectively The results from dot blot hybridizaton for amount of c myc mNA level, MTT spectrophotometry for determination of HL 60 cell proliferation and immuno histochemistry reaction for amount of c myc protein showed that P O modified oligonucleotides indeed inhibited the expression of c myc oncogene in HL 60 cells and increased the additional effect of cell death
Keywords:antisense oligonucleotide   oncogene   chemical modification
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