Leneuve Patricia, Colnot Sabine, Hamard Ghislaine, Francis Fiona, Niwa-Kawakita Michiko, Giovannini Marco, Holzenberger Martin
Inserm U515, Hôpital Saint-Antoine, 184 r Fbg St-Antoine, 75571 Paris 12, France.
Nucleic Acids Res. 2003 Mar 1;31(5):e21. doi: 10.1093/nar/gng021.
The binary Cre-lox conditional knockout system requires an essential part of the target gene to be flanked by loxP sites, enabling excision in vivo upon Cre expression. LoxP sites are introduced by homologous recombination, together with a selectable marker. However, this marker can disturb gene expression and should be removed. The marker is therefore often prepared with a third, flanking loxP site (tri-lox construct), facilitating its selective removal by partial Cre-lox recombination. We have shown that this excision can be achieved in vivo in the germline using EIIaCre transgenic mice, and have described the advantages of in vivo over in vitro removal. We show here that MeuCre40, a new transgenic mouse, more reliably and reproducibly generates an optimal partial mosaic Cre-lox recombination pattern in the early embryo. This mosaicism was transmitted to the germline and to many other tissues. Alleles with partial deletions, in particular floxed alleles from which the selectable marker was removed, were readily recovered in the next generation, after segregation from the transgene. Segregation via paternal or maternal transmission led to successful recovery of the alleles of interest. We also obtained total deletion of the floxed regions in the same experiment, making this transgene a polyvalent Cre-lox tool. We rigorously tested the ability of MeuCre40 to solve tri-lox problems, by using it for the in vivo removal of neo(R)- and hprt-expression cassettes from three different tri-lox mutants.
二元Cre-lox条件性敲除系统要求目标基因的一个重要部分位于loxP位点两侧,从而在Cre表达时能够在体内进行切除。loxP位点通过同源重组引入,并带有一个选择标记。然而,这个标记可能会干扰基因表达,因此应该去除。所以,这个标记通常带有第三个侧翼loxP位点(三lox构建体)来制备,便于通过部分Cre-lox重组进行选择性去除。我们已经证明,使用EIIaCre转基因小鼠可以在种系中在体内实现这种切除,并描述了体内切除相对于体外切除的优势。我们在此表明,新型转基因小鼠MeuCre40在早期胚胎中更可靠且可重复地产生最佳的部分镶嵌Cre-lox重组模式。这种镶嵌现象传递到了种系和许多其他组织中。在与转基因分离后,部分缺失的等位基因,特别是去除了选择标记的floxed等位基因,很容易在下一代中回收。通过父系或母系传递进行分离,成功回收了感兴趣的等位基因。我们在同一实验中还获得了floxed区域的完全缺失,使这个转基因成为一种多价Cre-lox工具。我们通过将MeuCre40用于从三个不同的三lox突变体中体内去除neo(R)和hprt表达盒,严格测试了MeuCre40解决三lox问题的能力。