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在中华仓鼠卵巢细胞中,非同源末端连接因子在同源重组和基因组编辑中的作用。

A role for alternative end-joining factors in homologous recombination and genome editing in Chinese hamster ovary cells.

机构信息

Institute of Biotechnology and Department of Fundamental Microbiology, University of Lausanne, 1015 Lausanne, Switzerland.

Institute of Biotechnology and Department of Fundamental Microbiology, University of Lausanne, 1015 Lausanne, Switzerland.

出版信息

DNA Repair (Amst). 2019 Oct;82:102691. doi: 10.1016/j.dnarep.2019.102691. Epub 2019 Aug 15.

Abstract

CRISPR technologies greatly foster genome editing in mammalian cells through site-directed DNA double strand breaks (DSBs). However, precise editing outcomes, as mediated by homologous recombination (HR) repair, are typically infrequent and outnumbered by undesired genome alterations. By using knockdown and overexpression studies in Chinese hamster ovary (CHO) cells as well as characterizing repaired DNA junctions, we found that efficient HR-mediated genome editing depends on alternative end-joining (alt-EJ) DNA repair activities, a family of incompletely characterized DNA repair pathways traditionally considered to oppose HR. This dependency was influenced by the CRISPR nuclease type and the DSB-to-mutation distance, but not by the DNA sequence surrounding the DSBs or reporter cell line. We also identified elevated Mre11 and Pari, and low Rad51 expression levels as the most rate-limiting factors for HR in CHO cells. Counteracting these three bottlenecks improved precise genome editing by up to 75%. Altogether, our study provides novel insights into the complex interplay of alt-EJ and HR repair pathways, highlighting their relevance for developing improved genome editing strategies.

摘要

CRISPR 技术通过靶向 DNA 双链断裂(DSB)极大地促进了哺乳动物细胞中的基因组编辑。然而,通过同源重组(HR)修复介导的精确编辑结果通常很少见,并且被不期望的基因组改变所超过。通过在中华仓鼠卵巢(CHO)细胞中进行敲低和过表达研究以及对修复的 DNA 连接点进行表征,我们发现有效的 HR 介导的基因组编辑依赖于替代性末端连接(alt-EJ)DNA 修复活性,这是一组传统上被认为与 HR 相对立的不完全特征化的 DNA 修复途径。这种依赖性受到 CRISPR 核酸酶类型和 DSB 到突变的距离的影响,但不受 DSB 周围的 DNA 序列或报告细胞系的影响。我们还发现,Mre11 和 Pari 的表达水平升高以及 Rad51 的表达水平降低是 CHO 细胞中 HR 的最关键限制因素。克服这三个瓶颈可将精确的基因组编辑提高多达 75%。总的来说,我们的研究为 alt-EJ 和 HR 修复途径的复杂相互作用提供了新的见解,强调了它们在开发改进的基因组编辑策略方面的相关性。

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