Lallemand Yvan, Moreau Julie, Cloment Cécile Saint, Vives Francina Langa, Robert Benoît
Institut Pasteur, Unité de Génétique Moléculaire de la Morphogenèse, CNRS URA 2578, F-75015 Paris, France.
Genesis. 2013 Feb;51(2):110-9. doi: 10.1002/dvg.22350. Epub 2012 Dec 20.
Msx1, a member of the Msx gene family, encodes a homeodomain transcription factor and plays critical roles during mouse development in numerous organs. By homologous recombination, we generated a new Msx1 allele (Msx1(CreERT2) ) in which the CreERT2 fusion protein is produced in place of the endogenous Msx1 protein. Using different reporter mouse strains and appropriate tamoxifen treatments, we show that, in mice bearing the Msx1(CrERT2) allele, CreERT2 is capable to induce loxP genomic recombination specifically in Msx1-expressing cells and that this can be obtained during embryonic development as well as after birth. These results show that this new mouse line can be used for lineage tracing of Msx1-expressing cells and their descendants and, combined with Cre-inducible Msx null alleles, for the analysis of Msx1 and/or Msx2 functions in the Msx1-expressing organs, in a time-dependant manner.
Msx1是Msx基因家族的成员之一,编码一种同源结构域转录因子,在小鼠多个器官的发育过程中发挥关键作用。通过同源重组,我们产生了一个新的Msx1等位基因(Msx1(CreERT2)),其中CreERT2融合蛋白替代内源性Msx1蛋白产生。使用不同的报告基因小鼠品系并进行适当的他莫昔芬处理,我们发现,在携带Msx1(CrERT2)等位基因的小鼠中,CreERT2能够在Msx1表达细胞中特异性诱导loxP基因组重组,并且这一过程在胚胎发育期间以及出生后均可实现。这些结果表明,这个新的小鼠品系可用于对Msx1表达细胞及其后代进行谱系追踪,并且与Cre诱导的Msx无效等位基因相结合,可用于以时间依赖性方式分析Msx1表达器官中Msx1和/或Msx2的功能。