Takahashi S, Yokota C, Takano K, Tanegashima K, Onuma Y, Goto J, Asashima M
Department of Life Sciences (Biology), The University of Tokyo, Tokyo 153-8902, Japan.
Development. 2000 Dec;127(24):5319-29. doi: 10.1242/dev.127.24.5319.
In vertebrates, Nodal-related protein plays crucial roles in mesoderm and endoderm induction. Here we describe two novel Xenopus nodal-related genes, Xnr5 and Xnr6, which are first zygotically expressed at the mid-blastula transition, in the dorsal-vegetal region including the Nieuwkoop center. Xnr5 and Xnr6 were isolated by expression screening of a library enriched with immediate-early-type transcripts, and are strong inducers of both mesoderm and endoderm. They also induce the other nodal-related genes in the animal cap. In embryos, cerberus-short (nodal-specific inhibitor) can inhibit Xnr1 and Xnr2 express to the same extent goosecoid, but not Xnr5 and Xnr6 transcription. Xnr5 and Xnr6 are regulated completely cell autonomously, differently from other Xnrs in the cell-dissociated embryos. The expression of Xnr5 and Xnr6 is regulated by maternal VegT and (beta)-catenin, but does not require TGF-(beta) signaling. Therefore, expression of Xnr5 and Xnr6 is controlled by different mechanisms from other Xnr family genes.
在脊椎动物中,Nodal相关蛋白在中胚层和内胚层诱导过程中发挥着关键作用。在此,我们描述了两个新的非洲爪蟾Nodal相关基因,即Xnr5和Xnr6,它们在囊胚中期转变时首次在合子中表达,位于包括Nieuwkoop中心在内的背侧植物区域。通过对富含即时早期型转录本的文库进行表达筛选,分离出了Xnr5和Xnr6,它们是中胚层和内胚层的强力诱导剂。它们还能诱导动物帽中的其他Nodal相关基因。在胚胎中,短尾Cerberus(Nodal特异性抑制剂)对Xnr1和Xnr2表达的抑制程度与对鹅膏蕈氨酸的抑制程度相同,但对Xnr5和Xnr6的转录没有抑制作用。与细胞解离胚胎中的其他Xnr不同,Xnr5和Xnr6完全是细胞自主调节的。Xnr5和Xnr6的表达受母体VegT和β-连环蛋白调控,但不需要TGF-β信号传导。因此,Xnr5和Xnr6的表达受与其他Xnr家族基因不同的机制控制。