一种快速CRISPR-Cas12a/T7EI集成工作流程,用于高通量筛选纯合突变细胞系

IF 3.1 3区 医学 Q2 CHEMISTRY, ANALYTICAL
Guohui Xiao , Hongyu Shi , Qiao Lin , Siqi Li , Junyan He , Guoliang Zhang
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引用次数: 0

摘要

高效筛选纯合子突变细胞系,特别是那些由低效CRISPR-Cas9编辑产生的突变细胞系,仍然具有挑战性。在这里,我们开发了HomoSelect-CT,这是一种结合CRISPR-Cas12a核酸检测和T7核酸内切酶I (T7EI)基因分型的集成工作流程,旨在简化纯合突变细胞系的筛选过程。这种方法不需要专门的仪器,提高了可访问性和效率。我们通过在crispr - cas9编辑的THP-1细胞中成功鉴定纯合突变体来验证homselect - ct,并通过Sanger测序和Western blot (WB)证实了这一点。这些发现表明,homselect - ct是快速分离基因组编辑细胞系的一种强大而有效的替代方法。整个筛选流程,从单克隆培养到确认的纯合突变体,在4 h内完成,只需要标准的PCR设备和常规试剂。因此,homselect - ct代表了CRISPR筛选方法的重大进步,提供了显著的简单性和高通量筛选,特别适用于低效编辑事件产生的突变体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A rapid CRISPR-Cas12a/T7EI integrated workflow for high-throughput screening of homozygous mutant cell lines
Efficient screening for homozygous mutant cell lines, particularly those resulting from low-efficiency CRISPR-Cas9 editing, remains challenging. Here, we developed HomoSelect-CT, an integrated workflow combining CRISPR-Cas12a nucleic acid detection with T7 Endonuclease I (T7EI) genotyping, designed to streamline the screening process for homozygous mutant cell lines. This method requires no specialized instrumentation, enhancing accessibility and efficiency. We validated HomoSelect-CT by successfully identifying homozygous mutants in CRISPR-Cas9-edited THP-1 cells, which was confirmed by Sanger sequencing and Western blot (WB). These findings demonstrate that HomoSelect-CT is a robust and efficient alternative for the rapid isolation of genome-edited cell lines. The entire screening workflow, from monoclonal cultures to confirmed homozygous mutants, is completed in under 4 h, requiring only standard PCR equipment and routine reagents. Thus, HomoSelect-CT represents a significant advancement in CRISPR screening methodology, offering remarkable simplicity and enabling high-throughput screening that is particularly suitable for mutants arising from low-efficiency editing events.
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来源期刊
CiteScore
6.70
自引率
5.90%
发文量
588
审稿时长
37 days
期刊介绍: This journal is an international medium directed towards the needs of academic, clinical, government and industrial analysis by publishing original research reports and critical reviews on pharmaceutical and biomedical analysis. It covers the interdisciplinary aspects of analysis in the pharmaceutical, biomedical and clinical sciences, including developments in analytical methodology, instrumentation, computation and interpretation. Submissions on novel applications focusing on drug purity and stability studies, pharmacokinetics, therapeutic monitoring, metabolic profiling; drug-related aspects of analytical biochemistry and forensic toxicology; quality assurance in the pharmaceutical industry are also welcome. Studies from areas of well established and poorly selective methods, such as UV-VIS spectrophotometry (including derivative and multi-wavelength measurements), basic electroanalytical (potentiometric, polarographic and voltammetric) methods, fluorimetry, flow-injection analysis, etc. are accepted for publication in exceptional cases only, if a unique and substantial advantage over presently known systems is demonstrated. The same applies to the assay of simple drug formulations by any kind of methods and the determination of drugs in biological samples based merely on spiked samples. Drug purity/stability studies should contain information on the structure elucidation of the impurities/degradants.
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