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首页> 外文期刊>Nucleic acids research >Accurate in vitro cleavage by RNase in of phosphorothioate-substituted RNA processing signals in bacteriophage T7 early mRNA
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Accurate in vitro cleavage by RNase in of phosphorothioate-substituted RNA processing signals in bacteriophage T7 early mRNA

机译:RNase准确体外裂解噬菌体T7早期mRNA中硫代磷酸酯取代的RNA处理信号

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To test the ability of an RNA processing enzyme to cleave chemically-modified RNA substrates, RNA transcripts containing RNase III cleavage sites were enzymatically synthesized in vitro to contain specific phosphorothioate diester internucleotide linkages. One transcript (R1.1 RNA) was generated using phage T7 RNA polymerase and a cloned segment of phage T7 RNA containing the R1.1 RNase III processing site. The second transcript was the phage T7 polycistronic early mRNA precursor, which was synthesized using E. coli RNA polymerase and T7 genomlc DNA. The RNA transcripts contained phosphorothioate diester groups at positions including the scissile bonds. The modified RNAs were stable to incubation In Mg2+-containing buffer, and were specifically cleaved by RNase III. RNA oligonucleotide sequence analysis showed that the modified R1.1 RNA processing site was the same as the canonical site and contained a phosphorothioate bond. Furthermore, RNase III cleaved the phosphorothioate internucleotide bond with 5′ polarity. RNase III cleavage of phosphorothioate substituted T7 polycistronic early mRNA precursor produced the same gel electrophoretlc pattern as that obtained with the control transcript. Thus, RNase III cleavage specificity is not altered by phosphorothioate internucleotide linkages.
机译:为了测试RNA加工酶切割化学修饰的RNA底物的能力,在体外酶促合成含有RNase III切割位点的RNA转录物,以包含特定的硫代磷酸二酯二核苷酸间键。使用噬菌体T7 RNA聚合酶和含有R1.1 RNase III加工位点的噬菌体T7 RNA的克隆片段生成一个转录本(R1.1 RNA)。第二个转录本是噬菌体T7多顺反子早期mRNA前体,它是使用大肠杆菌RNA聚合酶和T7基因组DNA合成的。 RNA转录物在包括易断裂键的位置上含有硫代磷酸二酯基。修饰的RNAs在含Mgsup 2+的缓冲液中稳定孵育,并被RNase III特异性切割。 RNA寡核苷酸序列分析表明,修饰的R1.1 RNA处理位点与标准位点相同,并含有硫代磷酸酯键。此外,RNA酶III以5'极性切割硫代磷酸酯核苷酸间键。硫代磷酸酯取代的T7多顺反子早期mRNA前体的RNase III裂解产生与对照转录物相同的凝胶电泳图谱。因此,RNase III切割特异性不会被硫代磷酸酯核苷酸间键改变。

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