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首页> 外文期刊>The Journal of biological chemistry >High-salt transcription of DNA cotethered with T7 RNA polymerase to beads generates increased yields of highly pure RNA
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High-salt transcription of DNA cotethered with T7 RNA polymerase to beads generates increased yields of highly pure RNA

机译:用T7 RNA聚合酶加上T7 RNA聚合酶的DNA的高盐转录产生高纯RNA的产量增加

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High yields of RNA are routinely prepared following the two-step approach of high-yield in vitro transcription using T7 RNA polymerase followed by extensive purification using gel separation or chromatographic methods. We recently demonstrated that in high-yield transcription reactions, as RNA accumulates in solution, T7 RNA polymerase rebinds and extends the encoded RNA (using the RNA as a template), resulting in a product pool contaminated with longer-thandesired, (partially) double-stranded impurities. Current purifi- cation methods often fail to fully eliminate these impurities, which, if present in therapeutics, can stimulate the innate immune response with potentially fatal consequences. In this work, we introduce a novel in vitro transcription method that generates high yields of encoded RNA without double-stranded impurities, reducing the need for further purification. Transcription is carried out at high-salt conditions to eliminate RNA product rebinding, while promoter DNA and T7 RNA polymerase are cotethered in close proximity on magnetic beads to drive promoter binding and transcription initiation, resulting in an increase in overall yield and purity of only the encoded RNA. A more complete elimination of doublestranded RNA during synthesis will not only reduce overall production costs, but also should ultimately enable therapies and technologies that are currently being hampered by those impurities.
机译:在使用T7 RNA聚合酶的高产体外转录的两步方法之后常规制备高产量的RNA,然后使用凝胶分离或色谱法进行大量纯化。我们最近证明,在高产转录反应中,随着RNA在溶液中累积,T7 RNA聚合酶重新矫正并延伸编码的RNA(使用RNA作为模板),导致污染的产品池被较长,(部分)的双重 - 杂质。目前的净化方法经常无法完全消除这些杂质,如果在治疗药物中存在,这可以刺激具有潜在致命后果的先天免疫应答。在这项工作中,我们介绍一种新的体外转录方法,在没有双链杂质的情况下产生高产量的编码RNA,降低了进一步纯化的需要。转录在高盐条件下进行以消除RNA产物纠正,而启动子DNA和T7 RNA聚合酶在磁珠上紧密接近以驱动启动子结合和转录起始,导致总产量和纯度仅增加编码的RNA。在合成期间更完全消除双层RNA,不仅可以降低整体生产成本,而且还应最终能够使目前受到这些杂质阻碍的疗法和技术能够实现疗法和技术。

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