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用于原代人类免疫细胞和造血干细胞中CRISPR基因编辑的肽介导核糖核蛋白递送技术(PERC)

Peptide-enabled ribonucleoprotein delivery for CRISPR engineering (PERC) in primary human immune cells and hematopoietic stem cells.

作者信息

Sahu Srishti, Castro Madalena, Muldoon Joseph J, Asija Kunica, Wyman Stacia K, Krishnappa Netravathi, de Onate Lorena, Eyquem Justin, Nguyen David N, Wilson Ross C

出版信息

bioRxiv. 2024 Aug 19:2024.07.14.603391. doi: 10.1101/2024.07.14.603391.

DOI:10.1101/2024.07.14.603391
PMID:39071446
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11275745/
Abstract

Peptide-enabled ribonucleoprotein delivery for CRISPR engineering (PERC) is a new approach for ex vivo genome editing of primary human cells. PERC uses a single amphiphilic peptide reagent to mediate intracellular delivery of the same pre-formed CRISPR ribonucleoprotein enzymes that are broadly used in research and therapeutics, resulting in high-efficiency editing of stimulated immune cells and cultured hematopoietic stem and progenitor cells (HSPCs). PERC facilitates nuclease-mediated gene knockout, precise transgene knock-in, and base editing. PERC involves mixing the CRISPR ribonucleoprotein enzyme with peptide and then incubating the formulation with cultured cells. For efficient transgene knock-in, adeno-associated virus (AAV) bearing homology-directed repair template DNA may be included. In contrast to electroporation, PERC is appealing as it requires no dedicated hardware and has less impact on cell phenotype and viability. Due to the gentle nature of PERC, delivery can be performed multiple times without substantial impact to cell health or phenotype. Here we report methods for improved PERC-mediated editing of T cells as well as novel methods for PERC-mediated editing of HSPCs, including knockout and precise knock-in. Editing efficiencies can surpass 90% using either Cas9 or Cas12a in primary T cells or HSPCs. Because PERC calls for only three readily available reagents - protein, RNA, and peptide - and does not require dedicated hardware for any step, PERC demands no special expertise and is exceptionally straightforward to adopt. The inherent compatibility of PERC with established cell engineering pipelines makes this approach appealing for rapid deployment in research and clinical settings.

摘要

用于CRISPR基因编辑的肽介导核糖核蛋白递送(PERC)是一种对原代人类细胞进行体外基因组编辑的新方法。PERC使用单一的两亲性肽试剂来介导相同的预形成CRISPR核糖核蛋白酶的细胞内递送,这些酶广泛用于研究和治疗,从而实现对活化免疫细胞和培养的造血干细胞及祖细胞(HSPC)的高效编辑。PERC有助于核酸酶介导的基因敲除、精确的转基因敲入和碱基编辑。PERC包括将CRISPR核糖核蛋白酶与肽混合,然后将制剂与培养细胞孵育。为了实现高效的转基因敲入,可加入携带同源定向修复模板DNA的腺相关病毒(AAV)。与电穿孔不同,PERC具有吸引力,因为它不需要专门的硬件,并且对细胞表型和活力的影响较小。由于PERC性质温和,可以多次进行递送而对细胞健康或表型没有实质性影响。在这里,我们报告了改进的PERC介导的T细胞编辑方法以及PERC介导的HSPC编辑新方法,包括敲除和精确敲入。在原代T细胞或HSPC中使用Cas9或Cas12a时,编辑效率可超过90%。由于PERC只需要三种容易获得的试剂——蛋白质、RNA和肽——并且任何步骤都不需要专门的硬件,PERC不需要特殊的专业知识,并且非常容易采用。PERC与既定细胞工程流程的内在兼容性使得这种方法在研究和临床环境中快速应用具有吸引力。