首页> 外文期刊>Nucleic Acids Research >Delivering Cas9/sgRNA ribonucleoprotein (RNP) by lentiviral capsid-based bionanoparticles for efficient 'hit-and-run' genome editing
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Delivering Cas9/sgRNA ribonucleoprotein (RNP) by lentiviral capsid-based bionanoparticles for efficient 'hit-and-run' genome editing

机译:通过慢病毒衣壳基甲基氨基丙烯酰基递送CAS9 / SGRNA核糖核蛋白(RNP),用于有效地“击中和运行”基因组编辑

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摘要

Transient expression of the CRISPR/Cas9 machinery will not only reduce risks of mutagenesis from off-target activities, but also decrease possible immune response to Cas9 protein. Building on our recent developing of a system able to package up to 100 copies of Cas9 mRNA in each lentivirus-like particle (LVLP) via the specific interaction between aptamer and aptamer-binding proteins (ABP), here we develop a lentiviral capsid-based bionanoparticle system, which allows efficient packaging of Cas9/sgRNA ribonucleoprotein (RNP). We show that replacing the Tetraloop of sgRNA scaffold with a com aptamer preserves the functions of the guide RNA, and the com-modified sgRNA can package Cas9/sgRNA RNP into lentivirus-like particles via the specific interactions between ABP and aptamer, and sgRNA and Cas9 protein. These RNP bionanoparticles generated Indels on different targets in different cells with efficiencies similar to or better than our recently described Cas9 mRNA LVLPs. The new system showed fast action and reduced off-target rates, and makes it more convenient and efficient in delivering Cas9 RNPs for transient Cas9 expression and efficient genome editing.
机译:CRISPR / CAS9机械的瞬态表达不仅会降低偏离靶发活动的诱变风险,还降低对CAS9蛋白的可能免疫应答。在我们最近的系统上建立能够通过Aptamer和Aptamer结合蛋白(ABP)之间的特异性相互作用在每种慢病毒样粒子(LVLP)中打包高达100份Cas9 mRNA副本的系统,在这里,我们开发了一种基于慢病毒的衣壳Bionanoparticle System,允许Cas9 / SGRNA核糖蛋白(RNP)的有效包装。我们表明,用COM适体替换SGRNA支架的Tetraloop保留了引导RNA的功能,并且通过ABP和适体之间的特异性相互作用和SGRNA和SGRNA和SGRNA和SGRNA和SGRNA之间的特异性相互作用将CAS9 / SGRNA RNP封装CAS9 / SGRNA RNP的功能。 Cas9蛋白质。这些RNP Bionanoparticles在不同细胞中的不同靶标产生的诱导效率与效率相似或比我们最近描述的Cas9 mRNA Lvlps相似。新系统显示了快速动作和降低的离目标速率,使得在提供CAS9 RNPS以进行瞬态CAS9表达和有效的基因组编辑方面更方便和有效。

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  • 来源
    《Nucleic Acids Research》 |2019年第17期|共13页
  • 作者单位

    Anhui Normal Univ Coll Life Sci Wuhu 241000 Anhui Peoples R China;

    Wake Forest Univ Hlth Sci Wake Forest Inst Regenerat Med Winston Salem NC 27101 USA;

    Wake Forest Univ Hlth Sci Wake Forest Inst Regenerat Med Winston Salem NC 27101 USA;

    Wake Forest Univ Hlth Sci Wake Forest Inst Regenerat Med Winston Salem NC 27101 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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