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通过脂质纳米颗粒递送稳定的CRISPR-Cas9核糖核蛋白对肺和肝脏进行编辑。

Lung and liver editing by lipid nanoparticle delivery of a stable CRISPR-Cas9 RNP.

作者信息

Chen Kai, Han Hesong, Zhao Sheng, Xu Bryant, Yin Boyan, Trinidad Marena, Burgstone Benjamin W, Murthy Niren, Doudna Jennifer A

出版信息

bioRxiv. 2023 Nov 15:2023.11.15.566339. doi: 10.1101/2023.11.15.566339.

Abstract

Lipid nanoparticle (LNP) delivery of CRISPR ribonucleoproteins (RNPs) has the potential to enable high-efficiency genome editing with low toxicity and an easily manufactured technology, if RNP efficacy can be maintained during LNP production. In this study, we engineered a thermostable Cas9 from (GeoCas9) using directed evolution to generate iGeoCas9 evolved variants capable of robust genome editing of cells and organs. iGeoCas9s were significantly better at editing cells than wild-type GeoCas9, with genome editing levels >100X greater than those induced by the native GeoCas9 enzyme. Furthermore, iGeoCas9 RNP:LNP complexes edited a variety of cell lines and induced homology-directed repair (HDR) in cells receiving co-delivered single-stranded DNA (ssDNA) templates. Using tissue-selective LNP formulations, we observed genome editing of 35‒56% efficiency in the liver or lungs of mice that received intravenous injections of iGeoCas9 RNP:LNPs. In particular, iGeoCas9 complexed to acid-degradable LNPs edited lung tissue with an average of 35% efficiency, a significant improvement over editing efficiencies observed previously using viral or non-viral delivery strategies. These results show that thermostable Cas9 RNP:LNP complexes are a powerful alternative to mRNA:LNP delivery vehicles, expanding the therapeutic potential of genome editing.

摘要

如果在脂质纳米颗粒(LNP)生产过程中能够维持CRISPR核糖核蛋白(RNP)的功效,那么通过LNP递送CRISPR RNP就有可能实现高效的基因组编辑,且毒性低、技术易于制造。在本研究中,我们利用定向进化工程改造了一种来自嗜热栖热菌的热稳定Cas9(GeoCas9),以产生能够对细胞和器官进行强大基因组编辑的iGeoCas9进化变体。iGeoCas9在编辑细胞方面明显优于野生型GeoCas9,其基因组编辑水平比天然GeoCas9酶诱导的水平高100倍以上。此外,iGeoCas9 RNP:LNP复合物编辑了多种细胞系,并在接受共递送单链DNA(ssDNA)模板的细胞中诱导了同源定向修复(HDR)。使用组织选择性LNP制剂,我们观察到在静脉注射iGeoCas9 RNP:LNPs的小鼠肝脏或肺中,基因组编辑效率为35%至56%。特别是,与酸可降解LNP复合的iGeoCas9对肺组织的编辑效率平均为35%,比先前使用病毒或非病毒递送策略观察到的编辑效率有显著提高。这些结果表明,热稳定的Cas9 RNP:LNP复合物是mRNA:LNP递送载体的有力替代品,扩展了基因组编辑的治疗潜力。

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