Yashiro Kenta, Shiratori Hidetaka, Hamada Hiroshi
Developmental Genetics Group, Graduate School of Frontier Biosciences, Osaka University, 1-3 Yamada-oka, Suita, Osaka 565-0871, Japan.
Nature. 2007 Nov 8;450(7167):285-8. doi: 10.1038/nature06254.
Laterality of the internal organs of vertebrates is determined by asymmetric Nodal signalling in the lateral plate mesoderm. A deficiency of such signalling results in heterotaxia syndrome, characterized by anomalous laterality of visceral organs and complex congenital heart conditions. Pitx2, the transcription factor induced by the Nodal signal, regulates left-right asymmetric morphogenesis. The cellular and molecular bases of asymmetric morphogenesis remain largely unknown, however. Here we show that ablation of unilateral Pitx2 expression in mice impairs asymmetric remodelling of the branchial arch artery (BAA) system, resulting in randomized laterality of the aortic arch. Pitx2-positive cells were found not to contribute to asymmetrically remodelled arteries. Instead, Pitx2 functions in the secondary heart field and induces a dynamic morphological change in the outflow tract of the heart, which results in the provision of an asymmetric blood supply to the sixth BAA. This uneven distribution of blood flow results in differential signalling by both the platelet-derived growth factor receptor and vascular endothelial growth factor receptor 2. The consequent stabilization of the left sixth BAA and regression of its right counterpart underlie left-sided formation of the aortic arch. Our results therefore indicate that haemodynamics, generated by a Pitx2-induced morphological change in the outflow tract, is responsible for the asymmetric remodelling of the great arteries.
脊椎动物内脏器官的左右不对称性由侧板中胚层中不对称的Nodal信号决定。这种信号的缺陷会导致内脏逆位综合征,其特征为内脏器官的异常左右不对称以及复杂的先天性心脏疾病。Pitx2是由Nodal信号诱导产生的转录因子,可调节左右不对称形态发生。然而,不对称形态发生的细胞和分子基础在很大程度上仍不清楚。在此,我们表明,在小鼠中消除单侧Pitx2表达会损害鳃弓动脉(BAA)系统的不对称重塑,导致主动脉弓的左右不对称性随机化。研究发现,Pitx2阳性细胞对动脉的不对称重塑没有贡献。相反,Pitx2在第二心脏区发挥作用,并诱导心脏流出道发生动态形态变化,从而为第六对BAA提供不对称的血液供应。这种血流分布不均导致血小板衍生生长因子受体和血管内皮生长因子受体2发出不同的信号。由此导致左第六对BAA的稳定及其右侧对应物的退化,这是主动脉弓左侧形成的基础。因此,我们的结果表明,由Pitx2诱导的流出道形态变化所产生的血流动力学,是大动脉不对称重塑的原因。