Department of Endocrine Neoplasia & Hormonal Disorders, MD Anderson Cancer Center, Houston, TX 77030, USA.
National Coalition of Independent Scholars, Brattleboro, VT 05301, USA.
Int J Mol Sci. 2023 Jun 17;24(12):10258. doi: 10.3390/ijms241210258.
Up until recently, methods for generating floxed mice either conventionally or by CRISPR (Clustered Regularly Interspaced Short Palindromic Repeats)-Cas9 (CRISPR-associated protein 9) editing have been technically challenging, expensive and error-prone, or time-consuming. To circumvent these issues, several labs have started successfully using a small artificial intron to conditionally knockout (KO) a gene of interest in mice. However, many other labs are having difficulty getting the technique to work. The key problem appears to be either a failure in achieving correct splicing after the introduction of the artificial intron into the gene or, just as crucial, insufficient functional KO of the gene's protein after Cre-induced removal of the intron's branchpoint. Presented here is a guide on how to choose an appropriate exon and where to place the recombinase-regulated artificial intron (rAI) in that exon to prevent disrupting normal gene splicing while maximizing mRNA degradation after recombinase treatment. The reasoning behind each step in the guide is also discussed. Following these recommendations should increase the success rate of this easy, new, and alternative technique for producing tissue-specific KO mice.
直到最近,生成 floxed 小鼠的方法无论是传统方法还是通过 CRISPR(成簇规律间隔短回文重复序列)-Cas9(CRISPR 相关蛋白 9)编辑都具有技术挑战性、昂贵且容易出错,或者耗时。为了规避这些问题,一些实验室已经成功地开始使用小的人工内含子来条件性敲除(KO)小鼠中感兴趣的基因。然而,许多其他实验室在使该技术发挥作用方面遇到了困难。关键问题似乎是在将人工内含子引入基因后未能正确剪接,或者同样重要的是,在 Cre 诱导内含子分支点去除后,基因蛋白的功能 KO 不足。本文提供了一个指南,介绍如何选择合适的外显子,并在该外显子中放置重组酶调控的人工内含子(rAI),以防止在重组酶处理后破坏正常基因剪接,同时最大限度地降解 mRNA。还讨论了指南中每个步骤的依据。遵循这些建议应该会提高这种简单、新颖和替代的产生组织特异性 KO 小鼠的技术的成功率。