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Development of a Facile Approach for Generating Chemically Modified CRISPR/Cas9 RNA

机译:生成化学修饰的CRISPR / Cas9 RNA的简便方法的开发

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摘要

The RNA-guided, modified type II prokaryotic CRISPR with CRISPR-associated proteins (CRISPR/Cas9) system represents a simple gene-editing platform with applications in biotechnology and also potentially as a therapeutic modality. The system requires a small guide RNA (sgRNA) and a catalytic Cas9 protein to induce non-homologous end joining (NHEJ) at break sites, resulting in the formation of inactivating mutations, or through homology-directed repair (HDR) can engineer in specific sequence changes. Although CRISPR/Cas9 is a powerful technology, the effects can be limited as a result of nuclease-mediated degradation of the RNA components. Significant research has focused on the solid-phase synthesis of CRISPR RNA components with chemically modified bases, but this approach is technically challenging and expensive. Development of a simple, generic approach to generate chemically modified CRISPR RNAs may broaden applications that require nuclease-resistant CRISPR components. We report here the development of a novel, functional U-replaced trans-activating RNA (tracrRNA) that can be transcribed with chemically stabilizing 2′-fluoro (2′F)-pyrimidines. These data represent a unique and facile approach to generating chemically stabilized CRISPR RNA.
机译:具有CRISPR相关蛋白(CRISPR / Cas9)系统的RNA引导,修饰的II型原核CRISPR代表了一个简单的基因编辑平台,可在生物技术中应用,也有可能作为治疗手段。该系统需要一个小的引导RNA(sgRNA)和一个催化Cas9蛋白,以在断裂位点诱导非同源末端连接(NHEJ),从而导致失活突变的形成,或者通过同源直接修复(HDR)可以在特定位点进行工程改造顺序更改。尽管CRISPR / Cas9是一项强大的技术,但由于核酸酶介导的RNA组分降解,其作用可能受到限制。大量研究集中在具有化学修饰碱基的CRISPR RNA组分的固相合成上,但是这种方法在技术上具有挑战性且昂贵。产生化学修饰的CRISPR RNA的简单通用方法的开发可能会拓宽需要耐核酸酶的CRISPR组件的应用。我们在这里报告了一种新型的,功能性的U取代的反式激活RNA(tracrRNA)的开发,该转录可以与化学稳定的2'-氟(2'F)-嘧啶一起转录。这些数据代表了产生化学稳定的CRISPR RNA的独特且简便的方法。

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