在哺乳动物细胞中实现无处不在的染色质开放元件作为CRISPR/ cas9介导的敲入的人工整合位点

IF 3.9 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Seul Mi Kim, Jaejin Lee, Jae Seong Lee
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引用次数: 0

摘要

CRISPR/ cas9介导的靶向基因整合(TI)已被用于产生具有可预测转基因表达的重组哺乳动物细胞系。鉴定基因组热点,使高和稳定的转基因表达和敲入(KI)效率是关键的全面实施ti介导的细胞系发育(CLD);然而,这样的识别是麻烦的。在这项研究中,我们开发了一个人工KI结构,可以作为不同基因组位点的热点。无所不在的染色质打开元件(UCOE)能够打开染色质并实现稳定和位点无关的转基因表达。将UCOE KI盒随机整合到CHO-K1和HEK293T细胞中,然后将增强的绿色荧光蛋白(EGFP) TI到人工UCOE KI位点。携带5 ' 2.2A2UCOE-CMV的CHO-K1随机池与未携带UCOE的对照相比,EGFP表达水平和KI效率显著增加。此外,5 ' 2.2A2UCOE-CMV在HEK293T基因组中显示出改善的Cas9可及性,导致indel频率和同源不依赖性KI增加。总的来说,这项评估揭示了UCOE KI构建物作为人工整合位点的潜力,通过减轻基因组热点的选择,简化了高产靶向整合物的筛选。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Implementation of ubiquitous chromatin opening elements as artificial integration sites for CRISPR/Cas9-mediated knock-in in mammalian cells

Implementation of ubiquitous chromatin opening elements as artificial integration sites for CRISPR/Cas9-mediated knock-in in mammalian cells

CRISPR/Cas9-mediated targeted gene integration (TI) has been used to generate recombinant mammalian cell lines with predictable transgene expression. Identifying genomic hot spots that render high and stable transgene expression and knock-in (KI) efficiency is critical for fully implementing TI-mediated cell line development (CLD); however, such identification is cumbersome. In this study, we developed an artificial KI construct that can be used as a hot spot at different genomic loci. The ubiquitous chromatin opening element (UCOE) was employed because of its ability to open chromatin and enable stable and site-independent transgene expression. UCOE KI cassettes were randomly integrated into CHO-K1 and HEK293T cells, followed by TI of enhanced green fluorescent protein (EGFP) onto the artificial UCOE KI site. The CHO-K1 random pool harboring 5′2.2A2UCOE-CMV displayed a significant increase in EGFP expression level and KI efficiency compared with that of the control without UCOE. In addition, 5′2.2A2UCOE-CMV showed improved Cas9 accessibility in the HEK293T genome, leading to an increase in indel frequency and homology-independent KI. Overall, this assessment revealed the potential of UCOE KI constructs as artificial integration sites in streamlining the screening of high-production targeted integrants by mitigating the selection of genomic hot spots.

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来源期刊
Engineering in Life Sciences
Engineering in Life Sciences 工程技术-生物工程与应用微生物
CiteScore
6.40
自引率
3.70%
发文量
81
审稿时长
3 months
期刊介绍: Engineering in Life Sciences (ELS) focuses on engineering principles and innovations in life sciences and biotechnology. Life sciences and biotechnology covered in ELS encompass the use of biomolecules (e.g. proteins/enzymes), cells (microbial, plant and mammalian origins) and biomaterials for biosynthesis, biotransformation, cell-based treatment and bio-based solutions in industrial and pharmaceutical biotechnologies as well as in biomedicine. ELS especially aims to promote interdisciplinary collaborations among biologists, biotechnologists and engineers for quantitative understanding and holistic engineering (design-built-test) of biological parts and processes in the different application areas.
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