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通过高容量腺病毒载体递送强制形成的CRISPR-Cas9异二聚体可促进人类细胞中精确的染色体缺失。

High-capacity adenovector delivery of forced CRISPR-Cas9 heterodimers fosters precise chromosomal deletions in human cells.

作者信息

Tasca Francesca, Brescia Marcella, Liu Jin, Janssen Josephine M, Mamchaoui Kamel, Gonçalves Manuel A F V

机构信息

Department of Cell and Chemical Biology, Leiden University Medical Center, Einthovenweg 20, 2333 ZC Leiden, the Netherlands.

Sorbonne Université, Inserm, Institut de Myologie, Centre de Recherche en Myologie, Paris, France.

出版信息

Mol Ther Nucleic Acids. 2023 Feb 22;31:746-762. doi: 10.1016/j.omtn.2023.02.025. eCollection 2023 Mar 14.

Abstract

Genome editing based on dual CRISPR-Cas9 complexes (multiplexes) permits removing specific genomic sequences in living cells leveraging research on functional genomics and genetic therapies. Delivering the required large and multicomponent reagents in a synchronous and stoichiometric manner remains, however, challenging. Moreover, uncoordinated activity of independently acting CRISPR-Cas9 multiplexes increases the complexity of genome editing outcomes. Here, we investigate the potential of fostering precise multiplexing genome editing using high-capacity adenovector particles (AdVPs) for the delivery of Cas9 ortholog fusion constructs alone (forced Cas9 heterodimers) or together with their cognate guide RNAs (forced CRISPR-Cas9 heterodimers). We demonstrate that the efficiency and accuracy of targeted chromosomal DNA deletions achieved by single AdVPs encoding forced CRISPR-Cas9 heterodimers is superior to that obtained when the various components are delivered separately. Finally, all-in-one AdVP delivery of forced CRISPR-Cas9 heterodimers triggers robust exon 51 splice site excision resulting in reading frame restoration and selection-free detection of dystrophin in muscle cells derived from Duchenne muscular dystrophy patients. In conclusion, AdVPs promote precise multiplexing genome editing through the integrated delivery of forced CRISPR-Cas9 heterodimer components, which, in comparison with split conventional CRISPR-Cas9 multiplexes, engage target sequences in a more coordinated fashion.

摘要

基于双CRISPR-Cas9复合物(多重复合物)的基因组编辑,借助功能基因组学和基因治疗研究,能够在活细胞中去除特定的基因组序列。然而,以同步且化学计量的方式递送所需的大型多组分试剂仍然具有挑战性。此外,独立作用的CRISPR-Cas9多重复合物的不协调活性增加了基因组编辑结果的复杂性。在此,我们研究了使用高容量腺病毒载体颗粒(AdVPs)促进精确多重基因组编辑的潜力,该颗粒用于单独递送Cas9直系同源物融合构建体(强制Cas9异二聚体)或与它们的同源引导RNA一起递送(强制CRISPR-Cas9异二聚体)。我们证明,由编码强制CRISPR-Cas9异二聚体的单个AdVPs实现的靶向染色体DNA缺失的效率和准确性优于将各个组分分开递送时所获得的效率和准确性。最后,强制CRISPR-Cas9异二聚体的一体化AdVP递送触发了强大的外显子51剪接位点切除,导致阅读框恢复,并在来自杜兴氏肌肉营养不良患者的肌肉细胞中实现了无选择的肌营养不良蛋白检测。总之,AdVPs通过强制CRISPR-Cas9异二聚体组分的整合递送促进精确多重基因组编辑,与传统的分裂CRISPR-Cas9多重复合物相比,其以更协调的方式结合靶序列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3fc/10020486/353d6f9a9a6a/fx1.jpg

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