Faucourt M, Houliston E, Besnardeau L, Kimelman D, Lepage T
Observatoire Oceanologique, UMR 7009 CNRS, Université de Paris VI, 06230, Villefranche-sur-Mer, France.
Dev Biol. 2001 Jan 15;229(2):287-306. doi: 10.1006/dbio.2000.9950.
Nodal and Nodal-related factors play fundamental roles in a number of developmental processes, including mesoderm and endoderm formation, patterning of the anterior neural plate, and determination of bilateral asymmetry in vertebrates. pitx2, a paired-like homeobox gene, has been proposed to act downstream of Nodal in the gene cascade providing left-right cues to the developing organs. Here, we report that pitx2 is required early in the Nodal signaling pathway for specification of the endodermal and mesodermal germ layers. We found that pitx2 is expressed very early during Xenopus and zebrafish development and in many regions where Nodal signaling is required, including the presumptive mesoderm and endoderm at the blastula and gastrula stages and the prechordal mesoderm at later stages. In Xenopus embryos, overexpression of pitx2 caused ectopic expression of goosecoid and sox-17 and interfered with mesoderm formation. Overexpression of pitx2 in Xenopus animal cap explants partially mimics the effects of Nodal overexpression, suggesting that pitx2 is a mediator of Nodal signaling during specification of the endoderm and prechordal plate, but not during mesoderm induction. We further demonstrate that pitx2 is induced by Nodal signaling in Xenopus animal caps and that the early expression of zebrafish pitx2 is absent when the Nodal signaling pathway is inactive. Inhibition of pitx2 function using a chimeric EnR-pitx2 blocked specification of the mesoderm and endoderm and caused severe embryonic defects resembling those seen when Nodal signaling is inhibited. Following inhibition of pitx2 function, the fate of ventral vegetal blastomeres was shifted from an endodermal to a more mesodermal fate, an effect that was reversed by wild-type pitx2. Finally, we show that inhibition of pitx2 function interferes with the response of cells to Nodal signaling. Our results provide direct evidence that pitx2 function is required for normal specification of the endodermal and mesodermal germ layers.
Nodal及Nodal相关因子在许多发育过程中发挥着重要作用,包括中胚层和内胚层的形成、前神经板的模式形成以及脊椎动物左右不对称性的确定。pitx2是一种类配对同源框基因,有人提出它在基因级联反应中位于Nodal下游,为发育中的器官提供左右线索。在此,我们报告pitx2在Nodal信号通路早期对于内胚层和中胚层胚层的特化是必需的。我们发现pitx2在非洲爪蟾和斑马鱼发育的早期就有表达,且在许多需要Nodal信号的区域都有表达,包括囊胚期和原肠胚期的预定中胚层和内胚层以及后期的脊索前中胚层。在非洲爪蟾胚胎中,pitx2的过表达导致goosecoid和sox - 17的异位表达,并干扰中胚层的形成。在非洲爪蟾动物帽外植体中过表达pitx2部分模拟了Nodal过表达的效应,这表明pitx2是内胚层和脊索前板特化过程中Nodal信号的介导因子,但不是中胚层诱导过程中的介导因子。我们进一步证明,pitx2在非洲爪蟾动物帽中由Nodal信号诱导,并且当Nodal信号通路不活跃时,斑马鱼pitx2的早期表达缺失。使用嵌合的EnR - pitx2抑制pitx2功能会阻断中胚层和内胚层的特化,并导致严重的胚胎缺陷,类似于抑制Nodal信号时所见到的缺陷。抑制pitx2功能后,腹侧植物性卵裂球的命运从内胚层命运转变为更偏向中胚层的命运,野生型pitx2可逆转这种效应。最后,我们表明抑制pitx2功能会干扰细胞对Nodal信号的反应。我们的结果提供了直接证据,证明pitx2功能对于内胚层和中胚层胚层的正常特化是必需的。