Watanabe Tadayoshi, Sato Yuki, Saito Daisuke, Tadokoro Ryosuke, Takahashi Yoshiko
Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5, Takayama, Ikoma, Nara 630-0192, Japan.
Proc Natl Acad Sci U S A. 2009 May 5;106(18):7467-72. doi: 10.1073/pnas.0902859106. Epub 2009 Apr 20.
During early morphogenesis, tissue segregation is often accompanied by changes in cell shape. To understand how such coordination is regulated, somitogenesis was used as a model. When a somite forms in the anterior end of the presomitic mesoderm, an intersomitic boundary (gap) emerges, and it is rapidly followed by cell epithelialization at this border. It has been known that the gap formation is regulated by intercellular signals. We here demonstrate that cMeso-1, the chicken homolog of mouse Mesp2, up-regulates EphA4 in the cells located posteriorly to a forming boundary. This in turn activates EphrinB2-reverse signals in the anteriorly juxtaposed cells, where the EphrinB2 signal is sufficient to cause a gap formation and cell epithelialization cell-autonomously. During these processes, Cdc42 needs to be repressed via tyrosine phosphorylation of EphrinB2. This is the first demonstration that Ephrin-reverse signal acts as a platform that couples distinct morphogenetic changes in cell polarity and tissue shape.
在早期形态发生过程中,组织分离通常伴随着细胞形状的变化。为了了解这种协调是如何被调控的,体节发生被用作一个模型。当一个体节在体节形成前的中胚层前端形成时,一个体节间边界(间隙)出现,并且紧接着在这个边界处细胞发生上皮化。已知间隙的形成是由细胞间信号调控的。我们在此证明,鸡的cMeso-1(小鼠Mesp2的同源物)在位于形成边界后方的细胞中上调EphA4。这反过来激活了在前紧邻细胞中的EphrinB2反向信号,其中EphrinB2信号足以自主地导致间隙形成和细胞上皮化。在这些过程中,需要通过EphrinB2的酪氨酸磷酸化来抑制Cdc42。这是首次证明Ephrin反向信号作为一个平台,将细胞极性和组织形状中不同的形态发生变化联系起来。