Wake Forest Institute for Regenerative Medicine, Wake Forest University Health Sciences, Winston-Salem, North Carolina, USA.
School of Pharmaceutical Sciences, Southern Medical University, Guangzhou, P. R. China.
CRISPR J. 2021 Dec;4(6):914-928. doi: 10.1089/crispr.2020.0106. Epub 2021 Mar 16.
Transient expression of the CRISPR-Cas9 machinery is desirable to reduce the risks of off-targets and immune responses. Electroporation of Cas9 ribonucleoproteins (RNPs) is the most common delivery method to achieve transient Cas9 expression. Recently, retroviral capsids have been used for delivering Cas9 RNPs, in which Cas9 was fused to the viral proteins. The fusion strategy may cause relative low capsid assembly efficiency. We recently developed virus-like particles (VLPs) consisting of lentiviral capsid and Cas9 RNPs using the specific interactions between aptamer and aptamer-binding protein (ABP), and obtained near-normal capsid assembly efficiency. Here we test whether highly active Cas9 (SpCas9) RNP VLPs can be generated with high efficiency by aptamer/ABP interaction. We found that by optimizing the locations and types of aptamer used for single guide RNA modification, highly active SpCas9 RNP VLPs can be generated efficiently. VLP-delivered SpCas9 generated lower off-target insertions and deletions than SpCas9 RNPs delivered by electroporation. VLPs containing Cas9 from different species and targeting multiple genes can be efficiently prepared in single-particle preparation. Multiple-target VLPs were more efficient than the combination of single-target VLPs for simultaneous targeting of multiple genes. Thus, in addition to better safety features, the Cas9 VLPs are especially suited for multiplex genome editing. In summary, our VLPs offer safe, efficient, and flexible multiplex genome editing.
瞬时表达 CRISPR-Cas9 系统可降低脱靶效应和免疫反应的风险。电穿孔 Cas9 核糖核蛋白(RNP)是实现瞬时 Cas9 表达的最常用方法。最近,逆转录病毒衣壳被用于递送 Cas9 RNP,其中 Cas9 与病毒蛋白融合。融合策略可能导致相对较低的衣壳组装效率。我们最近使用适体与适体结合蛋白(ABP)之间的特异性相互作用开发了由慢病毒衣壳和 Cas9 RNP 组成的病毒样颗粒(VLPs),并获得了接近正常的衣壳组装效率。在这里,我们测试了通过适体/ABP 相互作用是否可以高效地产生高活性 Cas9(SpCas9)RNP VLP。我们发现,通过优化用于单指导 RNA 修饰的适体的位置和类型,可以高效地产生高活性 SpCas9 RNP VLP。与电穿孔递送的 SpCas9 RNP 相比,VLP 递送的 SpCas9 产生的脱靶插入和缺失较少。可以在单个颗粒制备中高效制备包含来自不同物种的 Cas9 并靶向多个基因的 VLP。多靶标 VLP 比单个靶标 VLP 的组合更有效地同时靶向多个基因。因此,除了更好的安全性特征外,Cas9 VLP 特别适合用于多重基因组编辑。总之,我们的 VLP 提供了安全、高效和灵活的多重基因组编辑。