Howard Hughes Medical Institute and Developmental Biology Program, Sloan Kettering Institute, New York, NY, USA.
Howard Hughes Medical Institute and Developmental Biology Program, Sloan Kettering Institute, New York, NY, USA; Weill Cornell Graduate School of Medical Sciences, New York, NY, USA.
Dev Cell. 2019 Oct 21;51(2):208-221.e6. doi: 10.1016/j.devcel.2019.08.003. Epub 2019 Sep 5.
Epithelial cells dynamically self-organize in response to extracellular spatial cues relayed by cell-surface receptors. During convergent extension in Drosophila, Toll-related receptors direct planar polarized cell rearrangements that elongate the head-to-tail axis. However, many cells establish polarity in the absence of Toll receptor activity, indicating the presence of additional spatial cues. Here we demonstrate that the leucine-rich-repeat receptor Tartan and the teneurin Ten-m provide critical polarity signals at epithelial compartment boundaries. The Tartan and Ten-m extracellular domains interact in vitro, and Tartan promotes Ten-m localization to compartment boundaries in vivo. We show that Tartan and Ten-m are necessary for the planar polarity and organization of compartment boundary cells. Moreover, ectopic stripes of Tartan and Ten-m are sufficient to induce myosin accumulation at stripe boundaries. These results demonstrate that the Tartan/Ten-m and Toll receptor systems together create a high-resolution network of spatial cues that guides cell behavior during convergent extension.
上皮细胞动态地自我组织,以响应细胞表面受体传递的细胞外空间线索。在果蝇的会聚延伸过程中,Toll 相关受体指导平面极化的细胞重排,从而延长从头至尾的轴。然而,许多细胞在没有 Toll 受体活性的情况下建立极性,这表明存在其他空间线索。在这里,我们证明富含亮氨酸重复的受体 Tartan 和 tenacin Ten-m 在上皮细胞区室边界处提供关键的极性信号。Tartan 和 Ten-m 的细胞外结构域在体外相互作用,并且 Tartan 促进 Ten-m 在体内定位到区室边界。我们表明 Tartan 和 Ten-m 对于区室边界细胞的平面极性和组织是必需的。此外,Tartan 和 Ten-m 的异位条纹足以诱导肌球蛋白在条纹边界处积累。这些结果表明,Tartan/Ten-m 和 Toll 受体系统共同创建了一个高分辨率的空间线索网络,指导会聚延伸过程中的细胞行为。