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首页> 外文期刊>Nucleic Acids Research >POTENT ANTISENSE OLIGONUCLEOTIDES TO THE HUMAN MULTIDRUG RESISTANCE-1 MRNA ARE RATIONALLY SELECTED BY MAPPING RNA-ACCESSIBLE SITES WITH OLIGONUCLEOTIDE LIBRARIES
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POTENT ANTISENSE OLIGONUCLEOTIDES TO THE HUMAN MULTIDRUG RESISTANCE-1 MRNA ARE RATIONALLY SELECTED BY MAPPING RNA-ACCESSIBLE SITES WITH OLIGONUCLEOTIDE LIBRARIES

机译:通过将RNA易位位点与寡核苷酸文库配对,可以合理选择对人类多药耐药性1 MRNA的强效反义寡核苷酸

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摘要

Antisense oligonucleotides can vary significantly and unpredictably in their ability to inhibit protein synthesis. Libraries of chimeric oligonucleotides and RNase H were used to cleave and thereby locate sites on human multidrug resistance-1 RNA transcripts that are relatively accessible to oligonucleotide hybridization. In cell culture, antisense sequences designed to target these sites were significantly more active than oligonucleotides selected at random. This methodology should be generally useful for identification of potent antisense sequences. Correlation between oligonucleotide activity in the cell culture assay and in an in vitro RNase H assay supports the proposed role of the enzyme in the mechanism of antisense suppression in the cell.
机译:反义寡核苷酸抑制蛋白质合成的能力可能会发生明显变化,且变化不可预测。使用嵌合寡核苷酸和RNase H的文库进行切割,从而定位人类多药抗性1 RNA转录本上相对容易接近寡核苷酸杂交的位点。在细胞培养中,设计用于靶向这些位点的反义序列比随机选择的寡核苷酸具有更高的活性。该方法通常应用于鉴定有效的反义序列。细胞培养测定法和体外RNase H测定法中寡核苷酸活性之间的相关性支持了酶在细胞中反义抑制机制中的拟议作用。

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