CutIn: a ready-to-use construct for rapid generation of urgently needed transgenic cell lines in emerging infection research

IF 3.9 4区 生物学 Q1 GENETICS & HEREDITY
Liangliang Zhang, Dandan Li, Xiaowei Li, Liang Zong, Haibo Bian, Junnan Lu
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引用次数: 0

Abstract

Site-directed exogenous gene knock-in for stable cell line generation remains a multi-step procedure that heavily relies on expertise. Therefore, there is a need for a competent and easily manageable method, particularly when there is an urgent demand for cell lines, especially for emerging infection research. We present here a universal construct called CutIn that expresses the Cas9 protein and dual sgRNAs targeting a host cell genome locus and the ampicillin resistance (AmpR) gene of a cotransfected donor plasmid commercially available. This construct specifically induces double-strand breaks (DSBs) in cotransfected plasmids and host cell genomes, thereby facilitating whole plasmid integration through nonhomologous end joining (NHEJ) repair mechanisms. As pilot tests, adeno-associated virus integration site 1 (AAVS1) or hypoxanthine phosphoribosyl transferase (HPRT) locus was selected as host genome target, commonly used human cell lines 293T, HeLa and HCT116 were employed. CutIn was subjected for reporter plasmid knock-in in all three cell lines, either AAVS1 and AmpR or HPRT and AmpR loci were efficiently targeted. Fluorescent protein, human angiotensin-converting enzyme 2 (ACE2) and dengue virus (DENV) infection reporter transgenic cells were rapidly obtained via CutIn-mediated whole expression vector integration. This method is designed to be user-friendly and shows potential for supporting the investigation of emerging/re-emerging infectious diseases. Further validation in diverse research contexts will be necessary to fully assess its applicability and effectiveness.

CutIn:一种现成的构建物,用于快速生成新兴感染研究中急需的转基因细胞系
定点外源基因敲入稳定细胞系的产生仍然是一个多步骤的过程,严重依赖于专业知识。因此,需要一种有效且易于管理的方法,特别是在迫切需要细胞系的情况下,特别是在新出现的感染研究中。我们在这里提出了一种称为CutIn的通用构建体,它表达Cas9蛋白和靶向宿主细胞基因组位点的双sgRNAs和共转染的供体质粒的氨青霉素耐药性(AmpR)基因。该构建体在共转染质粒和宿主细胞基因组中特异性诱导双链断裂(DSBs),从而通过非同源末端连接(NHEJ)修复机制促进整个质粒整合。作为先导试验,选择腺相关病毒整合位点1 (AAVS1)或次黄嘌呤磷酸核糖基转移酶(HPRT)位点作为宿主基因组靶点,采用常用的人细胞系293T、HeLa和HCT116。在所有三种细胞系中,CutIn均被报告质粒敲入,AAVS1和AmpR位点或HPRT和AmpR位点均被有效靶向。通过cutin介导的全表达载体整合,快速获得了荧光蛋白、人血管紧张素转换酶2 (ACE2)和登革病毒(DENV)感染报告基因转染细胞。该方法的设计便于用户使用,并显示出支持调查新发/再发传染病的潜力。需要在不同的研究背景下进一步验证,以充分评估其适用性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.50
自引率
3.40%
发文量
92
审稿时长
2 months
期刊介绍: Functional & Integrative Genomics is devoted to large-scale studies of genomes and their functions, including systems analyses of biological processes. The journal will provide the research community an integrated platform where researchers can share, review and discuss their findings on important biological questions that will ultimately enable us to answer the fundamental question: How do genomes work?
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