Aoki Tazu O, Mathieu Juliette, Saint-Etienne Laure, Rebagliati Michael R, Peyriéras Nadine, Rosa Frédéric M
U368 INSERM, Ecole Normale Supérieure, 46 rue d'Ulm, 75230 Paris, France.
Dev Biol. 2002 Jan 15;241(2):273-88. doi: 10.1006/dbio.2001.0510.
Nodal signalling is essential for many developmental events during vertebrate development, including the establishment of left-right asymmetry, of dorsoventral axis of the central nervous system, and endoderm and mesoderm formation. The zebrafish TGFbeta-related type I receptor, TARAM-A (Tar), is expressed in the prospective mesendodermal territory and, when activated, can transfate early blastomeres into endoderm, suggesting that Nodal and Tar may represent similar signalling pathways. We have analysed the functional relationships between those two pathways in zebrafish. We first demonstrate that tar and the zebrafish nodal genes cyc and sqt functionally interact. We also show that a dominant-negative isoform of Tar, TarMR, interferes specifically with the function of Cyc and Sqt in vitro, but does not interfere with the function of BMP2, another TGFbeta-related molecule. TarMR interferes also with Nodal signalling in vivo since it enhances the phenotype of embryos with weakened Nodal signalling. Overexpression of tarMR in wild-type embryos interfered with the formation of endoderm-derived structures. Conversely, overexpression of tar enlarged the presumptive mesendodermal region at the onset of gastrulation. Together, our results point to Tar as an essential factor for endoderm formation and an important modulator of Nodal signalling, potentially representing one of the Nodal receptors. (c)2001 Elsevier Science.
结节信号对于脊椎动物发育过程中的许多发育事件至关重要,包括左右不对称的建立、中枢神经系统背腹轴的形成以及内胚层和中胚层的形成。斑马鱼转化生长因子β相关的I型受体TARAM-A(Tar)在前体中胚层区域表达,激活后可将早期卵裂球转化为内胚层,这表明结节信号和Tar可能代表相似的信号通路。我们分析了斑马鱼中这两条信号通路之间的功能关系。我们首先证明Tar与斑马鱼结节基因cyc和sqt在功能上相互作用。我们还表明,Tar的显性负性异构体TarMR在体外特异性干扰Cyc和Sqt的功能,但不干扰另一个转化生长因子β相关分子BMP2的功能。TarMR在体内也干扰结节信号,因为它增强了结节信号减弱的胚胎的表型。在野生型胚胎中过表达tarMR会干扰内胚层衍生结构的形成。相反,过表达tar会在原肠胚形成开始时扩大假定的中胚层区域。总之,我们的结果表明Tar是内胚层形成的关键因素和结节信号的重要调节因子,可能代表结节受体之一。(c)2001爱思唯尔科学出版社。