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使用瞬时报告基因进行编辑富集的人多能干细胞中的胞嘧啶和腺嘌呤碱基编辑。

Cytosine and adenosine base editing in human pluripotent stem cells using transient reporters for editing enrichment.

机构信息

School for Engineering of Matter, Transport, and Energy, Arizona State University, Tempe, AZ, USA.

School of Biological and Health Systems Engineering, Arizona State University, Tempe, AZ, USA.

出版信息

Nat Protoc. 2021 Jul;16(7):3596-3624. doi: 10.1038/s41596-021-00552-y. Epub 2021 Jun 25.

Abstract

Deaminase fused-Cas9 base editing technologies have enabled precise single-nucleotide genomic editing without the need for the introduction of damaging double-stranded breaks and inefficient homology-directed repair. However, current methods to isolate base-edited cell populations are ineffective, especially when utilized with human pluripotent stem cells, a cell type resistant to genome modification. Here, we outline a series of methods that employ transient reporters of editing enrichment (TREE) to facilitate the highly efficient single-base editing of human cells at precise genomic loci. Briefly, these transient reporters of editing enrichment based methods employ a transient episomal fluorescent reporter that allows for the real-time, flow-cytometry-based enrichment of cells that have had single nucleotide changes at precise genomic locations. This protocol details how these approaches can enable the rapid (~3-4 weeks) and efficient (clonal editing efficiencies >80%) generation of biallelic or multiplexed edited isogenic hPSC lines using adenosine and cytosine base editors.

摘要

脱氨酶融合 Cas9 碱基编辑技术使精确的单核苷酸基因组编辑成为可能,而无需引入破坏性的双链断裂和低效的同源定向修复。然而,目前分离碱基编辑细胞群体的方法效果不佳,特别是在利用人类多能干细胞时,这种细胞类型对基因组修饰具有抗性。在这里,我们概述了一系列方法,这些方法采用编辑富集的瞬时报告基因(TREE)来促进精确基因组位点的人类细胞的高效单碱基编辑。简而言之,这些基于瞬时编辑富集报告基因的方法采用瞬时的、可表达荧光报告基因的载体,允许在精确的基因组位置上发生单核苷酸改变的细胞进行实时、基于流式细胞术的富集。本方案详细介绍了如何使用腺嘌呤和胞嘧啶碱基编辑器,快速(约 3-4 周)和高效(克隆编辑效率>80%)生成双等位基因或多基因编辑的同基因 hPSC 系。

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