首页> 外文期刊>Nucleic Acids Research >Single base discrimination for ribonuclease H-dependent antisense effects within intact human leukaemia cells.
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Single base discrimination for ribonuclease H-dependent antisense effects within intact human leukaemia cells.

机译:在完整的人类白血病细胞中对核糖核酸酶H依赖性反义作用的单碱基识别。

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摘要

We have previously demonstrated, in vitro, that phosphodiester and phosphorothioate antisense oligodeoxynucleotides could direct ribonuclease H to cleave non-target RNA sites and that chimeric methylphosphonodiester/phosphodiester analogue structures were substantially more specific. In this report we show that such chimeric molecules can promote point mutation-specific scission of target mRNA by both Escherichia coli and human RNases H in vitro. Intact human leukaemia cells 'biochemically microinjected' with antisense effectors demonstrated efficient suppression of target mRNA expression. It was noted that the chimeric methylphosphonodiester/phosphodiester structures showed single base discrimination, whereas neither the phosphodiester nor phosphorothioate compounds were as stringent. Finally, we show that the antisense effects obtained in intact cells were due to endogenous RNase H activity.
机译:先前我们已经在体外证明了磷酸二酯和硫代磷酸酯反义寡聚脱氧核苷酸可以指导核糖核酸酶H裂解非靶RNA位点,并且嵌合的甲基磷酸二酯/磷酸二酯类似物结构实质上更具特异性。在这份报告中,我们显示了这种嵌合分子可以在体外通过大肠杆菌和人RNases H促进靶mRNA的点突变特异性断裂。用反义效应子“生化显微注射”的完整人类白血病细胞表现出对靶mRNA表达的有效抑制。注意到,嵌合甲基膦二酸酯/磷酸二酯结构显示出单碱基区分,而磷酸二酯和硫代磷酸酯化合物都没有那么严格。最后,我们表明在完整细胞中获得的反义作用是由于内源性RNase H活性所致。

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