Azcoitia Valeria, Aracil Miguel, Martínez-A Carlos, Torres Miguel
Departamento de Inmunología y Oncología, Centro Nacional de Biotecnología/CSIC UAM, Campus de Cantoblanco, Madrid, Spain.
Dev Biol. 2005 Apr 15;280(2):307-20. doi: 10.1016/j.ydbio.2005.01.004.
Homeodomain proteins of the Meis subfamily are expressed dynamically in several organs during embryogenesis and exert potent regulatory activity through their interaction with Hox proteins and other transcription factors. Here we show that Meis1 is expressed in the hematopoietic stem cell (HSC) compartment in the fetal liver, and in the primary sites of definitive hematopoiesis, including the aorta-gonad-mesonephros (AGM) mesenchyme, the hemogenic embryonic arterial endothelium, and hematopoietic clusters within the aorta, vitelline, and umbilical arteries. We inactivated the Meis1 gene in mice and found that Meis1 mutant mice die between embryonic days 11.5 and 14.5, showing internal hemorrhage, liver hypoplasia, and anemia. In Meis1 mutant mouse fetal liver and AGM, HSC compartments are severely underdeveloped and colony-forming potential is profoundly impaired. AGM mesenchymal cells expressing Runx1, an essential factor for definitive HSC specification, are almost absent in mutant mice. In addition, hematopoietic clusters in the dorsal aorta, vitelline, and umbilical arteries are reduced in size and number. These results show a requirement for Meis1 in the establishment of definitive hematopoiesis in the mouse embryo. Meis1 mutant mice also displayed complete agenesis of the megakaryocyte lineage and localized defects in vascular patterning, which may cause the hemorrhagic phenotype.
Meis亚家族的同源结构域蛋白在胚胎发育过程中在多个器官中动态表达,并通过与Hox蛋白和其他转录因子相互作用发挥强大的调节活性。在此我们表明,Meis1在胎儿肝脏的造血干细胞(HSC)区室以及确定性造血的主要部位表达,包括主动脉-性腺-中肾(AGM)间充质、造血性胚胎动脉内皮以及主动脉、卵黄动脉和脐动脉内的造血簇。我们使小鼠中的Meis1基因失活,发现Meis1突变小鼠在胚胎第11.5天至14.5天之间死亡,表现出内出血、肝脏发育不全和贫血。在Meis1突变小鼠的胎儿肝脏和AGM中,HSC区室严重发育不全,集落形成潜力严重受损。在突变小鼠中几乎不存在表达Runx1(确定性HSC特化的必需因子)的AGM间充质细胞。此外,背主动脉、卵黄动脉和脐动脉中的造血簇在大小和数量上均减少。这些结果表明在小鼠胚胎确定性造血的建立过程中需要Meis1。Meis1突变小鼠还表现出巨核细胞谱系完全缺失以及血管模式形成的局部缺陷,这可能导致出血表型。