Röttinger Eric, Croce Jenifer, Lhomond Guy, Besnardeau Lydia, Gache Christian, Lepage Thierry
UMR 7009 CNRS, Université de Pierre et Marie Curie (Paris 6 Observatoire Oceanologique, 06230 Villefranche-sur-Mer, France.
Development. 2006 Nov;133(21):4341-53. doi: 10.1242/dev.02603.
Studies in Caenorhabditis elegans and vertebrates have established that the MAP kinase-related protein NLK counteracts Wnt signalling by downregulating the transcription factor TCF. Here, we present evidence that during early development of the sea urchin embryo, NLK is expressed in the mesodermal precursors in response to Notch signalling and directs their fate by downregulating TCF. The expression pattern of nlk is strikingly similar to that of Delta and the two genes regulate the expression of each other. nlk overexpression, like ectopic activation of Notch signalling, provoked massive formation of mesoderm and associated epithelial mesenchymal transition. NLK function was found to be redundant with that of the MAP kinase ERK during mesoderm formation and to require the activity of the activating kinase TAK1. In addition, the sea urchin NLK, like its vertebrate counterpart, antagonizes the activity of the transcription factor TCF. Finally, activating the expression of a TCF-VP16 construct at blastula stages strongly inhibits endoderm and mesoderm formation, indicating that while TCF activity is required early for launching the endomesoderm gene regulatory network, it has to be downregulated at blastula stage in the mesodermal lineage. Taken together, our results indicate that the evolutionarily conserved TAK/NLK regulatory pathway has been recruited downstream of the Notch/Delta pathway in the sea urchin to switch off TCF-beta-catenin signalling in the mesodermal territory, allowing precursors of this germ layer to segregate from the endomesoderm.
秀丽隐杆线虫和脊椎动物的研究已证实,丝裂原活化蛋白激酶相关蛋白NLK通过下调转录因子TCF来对抗Wnt信号传导。在此,我们提供证据表明,在海胆胚胎的早期发育过程中,NLK响应Notch信号在中胚层前体细胞中表达,并通过下调TCF来决定其命运。nlk的表达模式与Delta的表达模式惊人地相似,且这两个基因相互调节对方的表达。nlk过表达,如同Notch信号的异位激活一样,引发了大量中胚层的形成以及相关的上皮-间质转化。发现在中胚层形成过程中,NLK的功能与丝裂原活化蛋白激酶ERK的功能冗余,且需要激活激酶TAK1的活性。此外,海胆NLK与其脊椎动物对应物一样,拮抗转录因子TCF的活性。最后,在囊胚期激活TCF-VP16构建体的表达会强烈抑制内胚层和中胚层的形成,这表明虽然TCF活性在启动内胚层-中胚层基因调控网络的早期是必需的,但在中胚层谱系的囊胚期必须下调。综上所述,我们的结果表明,进化上保守的TAK/NLK调控途径已在海胆的Notch/Delta途径下游被募集,以在中胚层区域关闭TCF-β-连环蛋白信号传导,使该胚层的前体细胞与内胚层-中胚层分离。