A robust knock-in approach using a minimal promoter and a minicircle

小圆圈 生物 清脆的 报告基因 Cas9 转基因 基因组编辑 计算生物学 异位表达 质粒 基因 表情盒 发起人 遗传学 基因表达 重组DNA 载体(分子生物学)
作者
Margaret Keating,Ryan Hagle,Daniel Osorio-Méndez,Anjelica Rodriguez-Parks,S. Almutawa,Junsu Kang
出处
期刊:Developmental Biology [Elsevier BV]
卷期号:505: 24-33
标识
DOI:10.1016/j.ydbio.2023.10.002
摘要

Knock-in reporter (KI) animals are essential tools in biomedical research to study gene expression impacting diverse biological events. While CRISPR/Cas9-mediated genome editing allows for the successful generation of KI animals, several factors should be considered, such as low expression of the target gene, prevention of bacterial DNA integration, and in-frame editing. To circumvent these challenges, we developed a new strategy that utilizes minicircle technology and introduces a minimal promoter. We demonstrated that minicircles serve as an efficient donor DNA in zebrafish, significantly enhancing KI events compared to plasmids containing bacterial backbones. In an attempt to generate a KI reporter for scn8ab, we precisely integrated a fluorescence gene at the start codon. However, the seamlessly integrated reporter was unable to direct expression that recapitulates endogenous scn8ab expression. To overcome this obstacle, we introduced the hsp70 minimal promoter to provide an ectopic transcription initiation site and succeeded in establishing stable KI transgenic reporters for scn8ab. This strategy also created a fgf20b KI reporter line with a high success rate. Furthermore, our data revealed that an unexpectedly edited genome can inappropriately influence the integrated reporter gene expression, highlighting the importance of selecting a proper KI line. Overall, our approach utilizing a minicircle and an ectopic promoter establishes a robust and efficient strategy for KI generation, expanding our capacity to create KI animals.

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