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TraFo-CRISPR: Enhanced Genome Engineering by Transient Foamy Virus Vector-Mediated Delivery of CRISPR/Cas9 Components

机译:TraFo-CRISPR / PluF:通过瞬时泡沫病毒载体介导的CRISPR / Cas9组分增强的基因组工程

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摘要

The adaptation of CRISPR/Cas technology for use in mammals has revolutionized genome engineering. In particular with regard to clinical application, efficient expression of Cas9 within a narrow time frame is highly desirable to minimize the accumulation of off-target editing. We developed an effective, aptamer-independent retroviral delivery system for Cas9 mRNAs that takes advantage of a unique foamy virus (FV) capability: the efficient encapsidation and transfer of non-viral RNAs. This enabled us to create a FV vector toolbox for efficient, transient delivery (TraFo) of CRISPR/Cas9 components into different target tissues. Co-delivery of Cas9 mRNA by TraFo-Cas9 vectors in combination with retroviral, integration-deficient single guide RNA (sgRNA) expression enhanced efficacy and specificity of gene-inactivation compared with CRISPR/Cas9 lentiviral vector systems. Furthermore, separate TraFo-Cas9 delivery allowed the optional inclusion of a repair matrix for efficient gene correction or tagging as well as the addition of fluorescent negative selection markers for easy identification of off-target editing or incorrect repair events. Thus, the TraFo CRISPR toolbox represents an interesting alternative technology for gene inactivation and gene editing.
机译:CRISPR / Cas技术在哺乳动物中的应用已发生了革新,彻底改变了基因组工程。特别是在临床应用方面,非常需要在狭窄的时间范围内有效表达Cas9,以最大程度地减少脱靶编辑的积累。我们为Cas9 mRNA开发了有效的,不依赖适体的逆转录病毒递送系统,该系统利用了独特的泡沫病毒(FV)功能:有效的衣壳化和非病毒RNA的转移。这使我们能够创建FV矢量工具箱,以将CRISPR / Cas9组件高效,瞬时地传递(TraFo)到不同的目标组织中。与CRISPR / Cas9慢病毒载体系统相比,TraFo-Cas9载体与逆转录病毒,整合缺陷型单向导RNA(sgRNA)表达组合共同递送Cas9 mRNA增强了基因灭活的功效和特异性。此外,单独的TraFo-Cas9递送允许可选地包含修复基质,以进行有效的基因校正或标记,以及添加荧光阴性选择标记,以轻松识别脱靶编辑或错误的修复事件。因此,TraFo CRISPR工具箱代表了一种有趣的基因失活和基因编辑替代技术。

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