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Optimized RNP transfection for highly efficient CRISPR/Cas9-mediated gene knockout in primary T cells

机译:优化的RNP转染可在原代T细胞中高效利用CRISPR / Cas9介导的基因敲除

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Seki and Rutz describe an optimized Cas9/RNP transfection approach to enable highly efficient CRISPR-mediated gene knockout in primary mouse and human T cells without T cell receptor stimulation that results in near complete loss of target gene expression at the population level. CRISPR (clustered, regularly interspaced, short palindromic repeats)/Cas9 (CRISPR-associated protein 9) has become the tool of choice for generating gene knockouts across a variety of species. The ability for efficient gene editing in primary T cells not only represents a valuable research tool to study gene function but also holds great promise for T cell–based immunotherapies, such as next-generation chimeric antigen receptor (CAR) T cells. Previous attempts to apply CRIPSR/Cas9 for gene editing in primary T cells have resulted in highly variable knockout efficiency and required T cell receptor (TCR) stimulation, thus largely precluding the study of genes involved in T cell activation or differentiation. Here, we describe an optimized approach for Cas9/RNP transfection of primary mouse and human T cells without TCR stimulation that results in near complete loss of target gene expression at the population level, mitigating the need for selection. We believe that this method will greatly extend the feasibly of target gene discovery and validation in primary T cells and simplify the gene editing process for next-generation immunotherapies.
机译:Seki和Rutz描述了一种优化的Cas9 / RNP转染方法,可在没有T细胞受体刺激的情况下在原代小鼠和人类T细胞中高效CRISPR介导的基因敲除,从而导致人口水平上靶基因表达几乎完全丧失。 CRISPR(聚簇的,规则间隔的,短回文重复序列)/ Cas9(CRISPR相关蛋白9)已成为在多种物种中产生基因敲除的选择工具。在原代T细胞中进行有效基因编辑的能力不仅代表了研究基因功能的有价值的研究工具,而且对基于T细胞的免疫疗法(如下一代嵌合抗原受体(CAR)T细胞)也具有广阔的前景。先前尝试将CRIPSR / Cas9用于原代T细胞中的基因编辑的尝试已导致高度可变的敲除效率和所需的T细胞受体(TCR)刺激,因此在很大程度上排除了涉及T细胞活化或分化的基因的研究。在这里,我们描述了在没有TCR刺激的情况下对原代小鼠和人T细胞进行Cas9 / RNP转染的优化方法,该方法导致在群体水平上几乎完全丧失靶基因表达,从而减轻了选择的需要。我们相信,这种方法将大大扩展原发性T细胞中靶基因发现和验证的可行性,并简化下一代免疫疗法的基因编辑过程。

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