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Non-viral Gene Disruption by CRISPR/Cas9 Delivery Using Cell-permeable and Protein-stabilizing 30Kc19 Protein

机译:使用细胞可渗透和蛋白质稳定30kC19蛋白,通过CRISPR / CAS9递送的非病毒基因破坏

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CRISPR/Cas9 system has served a new insight in genome editing of eukaryotes, including human cells. In this system, delivery of Cas9 nuclease with guide RNA has been central challenge in developing safe and efficient techniques. The viral delivery of genes encoding these two components i.e. Cas9 and guide RNA may cause unexpected integration of the DNA sequence into the host cell genome, and lead to potential safety problems such as tumorigenesis. Herein, we report that the Cas9 protein can be directly delivered into the human cells through fusion with 30Kc19, a cell-penetrating and protein-stabilizing protein originating from silkworm. The 30Kc19-conjugated Cas9 (30Kcl9-Cas9) showed higher stability than native Cas9 for thermal and chemical-induced inactivation in DNA-cleavable activity. In addition, it was demonstrated that 30Kc19-Cas9 was efficiently delivered into human cells and resulted in targeted gene disruption with single guide RNA by showing gene expression and site-specific mutations in the genome. With the advantages of efficient delivery in addition to the enhancement of Cas9 stability, this method is expected to provide a versatile strategy to advance non-viral and clinically-feasible genome editing for in vivo applications.
机译:CRISPR / CAS9系统在基因组编辑中提供了新的真核生物,包括人体细胞的新洞察力。在该系统中,通过引导RNA递送CAS9核酸酶在开发安全有效的技术方面是中央挑战。编码这两个组分的基因的病毒递送I.S9和引导RNA可能导致DNA序列意外集成到宿主细胞基因组中,并导致潜在的安全问题,例如肿瘤发生。在此,我们报告CAS9蛋白可以通过30kC19的融合直接递送到人体细胞中,源自蚕的细胞穿透和蛋白质稳定蛋白。 30KC19 - 共轭CAS9(30kC19-CAS9)显示出比天然Cas9的稳定性更高,用于在DNA可切割的活性中的热和化学诱导的灭活。此外,证明30KC19-CAS9有效地递送到人细胞中,并通过在基因组中显示基因表达和位点特异性突变,导致单引导RNA导致靶向基因破坏。除了增强CAS9稳定性之外,还有高效递送的优点,该方法预计将提供多功能策略,以推进体内应用中的非病毒和临床可行的基因组编辑。

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