Molecular Genetics of Angiogenesis Group, Centro Nacional de Investigaciones Cardiovasculares (CNIC), Madrid, Spain.
Uppsala University, Department of Immunology, Genetics and Pathology, Dag Hammarskjölds väg 20, 751 85 Uppsala, Sweden.
Nucleic Acids Res. 2024 Jul 22;52(13):e56. doi: 10.1093/nar/gkae472.
Methods for modifying gene function at high spatiotemporal resolution in mice have revolutionized biomedical research, with Cre-loxP being the most widely used technology. However, the Cre-loxP technology has several drawbacks, including weak activity, leakiness, toxicity, and low reliability of existing Cre-reporters. This is mainly because different genes flanked by loxP sites (floxed) vary widely in their sensitivity to Cre-mediated recombination. Here, we report the generation, validation, and utility of iSuRe-HadCre, a new dual Cre-reporter and deleter mouse line that avoids these drawbacks. iSuRe-HadCre achieves this through a novel inducible dual-recombinase genetic cascade that ensures that cells expressing a fluorescent reporter had only transient Cre activity, that is nonetheless sufficient to effectively delete floxed genes. iSuRe-HadCre worked reliably in all cell types and for the 13 floxed genes tested. This new tool will enable the precise, efficient, and trustworthy analysis of gene function in entire mouse tissues or in single cells.
方法来修饰基因功能在高时空分辨率的老鼠已经彻底改变了生物医学研究,Cre-loxP 是最广泛使用的技术。然而,Cre-loxP 技术有几个缺点,包括弱活性、漏性、毒性和现有的 Cre 报告者的可靠性低。这主要是因为不同的基因侧翼的loxP 位点(floxed)在对 Cre 介导的重组的敏感性上有很大的差异。在这里,我们报告了 iSuRe-HadCre 的产生、验证和效用,这是一种新的双 Cre 报告基因和缺失鼠系,可以避免这些缺点。iSuRe-HadCre 通过一种新的诱导型双重组酶遗传级联来实现这一点,以确保表达荧光报告基因的细胞只有短暂的 Cre 活性,但足以有效地删除 floxed 基因。iSuRe-HadCre 在所有测试的 13 个 floxed 基因的所有细胞类型中都可靠地工作。这个新工具将能够精确、高效和可靠地分析整个小鼠组织或单个细胞中的基因功能。