De Bono Christopher, Lescroart Fabienne, Zaffran Stéphane
Aix Marseille Univ, INSERM, MMG (Marseille Medical Genetics), Marseille, France.
Methods Mol Biol. 2025;2889:121-137. doi: 10.1007/978-1-0716-4322-8_9.
Anterior Hox genes are required for genetic identity and anterior posterior patterning of the second heart field (SHF), which contributes to the formation of the embryonic heart in vertebrates. Defective contribution of SHF cells to the arterial or venous pole of the heart is often associated with severe congenital heart defects. The mouse Cre-lox system allows the activation of expression of any gene of interest in restricted tissues. We developed a gain of function approach that relies on the use of a CAG transgene to ectopically activate Hoxb1 expression in SHF cardiac progenitor cells through specific Cre activation. Therefore, we generated a floxed transgenic mouse line, CAG-Hoxb1-eGFP, which upon recombination by Cre recombinase conditionally induces robust Hoxb1 and eGFP expression. When induced within the anterior SHF lineage, we detected heart defects in mouse embryos such as right ventricular hypoplasia. Here, we describe the strategy for generating and genetically crossing this transgenic mouse line. We also provide detailed protocols for whole-mount embryo and paraffin section in situ RNAscope hybridization and X-gal staining allowing investigation of SHF contribution during heart development.
前Hox基因对于第二心脏场(SHF)的遗传身份和前后模式形成是必需的,第二心脏场有助于脊椎动物胚胎心脏的形成。SHF细胞对心脏动脉或静脉极的贡献缺陷通常与严重的先天性心脏缺陷有关。小鼠Cre-lox系统允许在受限组织中激活任何感兴趣基因的表达。我们开发了一种功能获得方法,该方法依赖于使用CAG转基因通过特异性Cre激活在SHF心脏祖细胞中异位激活Hoxb1表达。因此,我们构建了一个floxed转基因小鼠品系CAG-Hoxb1-eGFP,其在Cre重组酶介导的重组后可条件性地诱导Hoxb1和eGFP的强烈表达。当在前SHF谱系中诱导时,我们在小鼠胚胎中检测到心脏缺陷,如右心室发育不全。在此,我们描述了生成该转基因小鼠品系并进行遗传杂交的策略。我们还提供了用于全胚胎和石蜡切片原位RNAscope杂交以及X-gal染色的详细方案,以便在心脏发育过程中研究SHF的贡献。