Luu Olivia, Damm Erich W, Parent Serge E, Barua Debanjan, Smith Tamara H L, Wen Jason W H, Lepage Stephanie E, Nagel Martina, Ibrahim-Gawel Hady, Huang Yunyun, Bruce Ashley E E, Winklbauer Rudolf
Department of Cell and Systems Biology, University of Toronto, Toronto, Ontario, Canada M5S 3G5.
Zoological Institute, University of Cologne, D-50674 Cologne, Germany.
J Cell Biol. 2015 Mar 16;208(6):839-56. doi: 10.1083/jcb.201409026.
Cleft-like boundaries represent a type of cell sorting boundary characterized by the presence of a physical gap between tissues. We studied the cleft-like ectoderm-mesoderm boundary in Xenopus laevis and zebrafish gastrulae. We identified the transcription factor Snail1 as being essential for tissue separation, showed that its expression in the mesoderm depends on noncanonical Wnt signaling, and demonstrated that it enables paraxial protocadherin (PAPC) to promote tissue separation through two novel functions. First, PAPC attenuates planar cell polarity signaling at the ectoderm-mesoderm boundary to lower cell adhesion and facilitate cleft formation. Second, PAPC controls formation of a distinct type of adhesive contact between mesoderm and ectoderm cells that shows properties of a cleft-like boundary at the single-cell level. It consists of short stretches of adherens junction-like contacts inserted between intermediate-sized contacts and large intercellular gaps. These roles of PAPC constitute a self/non-self-recognition mechanism that determines the site of boundary formation at the interface between PAPC-expressing and -nonexpressing cells.
裂隙样边界是一种细胞分选边界,其特征是组织之间存在物理间隙。我们研究了非洲爪蟾和斑马鱼原肠胚中的裂隙样外胚层-中胚层边界。我们确定转录因子Snail1对组织分离至关重要,表明其在中胚层中的表达依赖于非经典Wnt信号传导,并证明它使近轴原钙黏蛋白(PAPC)通过两种新功能促进组织分离。首先,PAPC减弱外胚层-中胚层边界处的平面细胞极性信号传导,以降低细胞黏附并促进裂隙形成。其次,PAPC控制中胚层和外胚层细胞之间一种独特类型的黏附接触的形成,这种接触在单细胞水平上表现出裂隙样边界的特性。它由插入中等大小接触和大细胞间隙之间的短段黏着连接样接触组成。PAPC的这些作用构成了一种自我/非自我识别机制,该机制决定了在表达PAPC和不表达PAPC的细胞之间界面处边界形成的位点。