Department of Molecular Biology, Princeton University, Princeton, United States.
Elife. 2021 Feb 2;10:e62097. doi: 10.7554/eLife.62097.
To orchestrate collective polarization across tissues, planar cell polarity (PCP) proteins localize asymmetrically to cell junctions, a conserved feature of PCP that requires the atypical cadherin Celsr1. We report that mouse Celsr1 engages in both - and -interactions, and organizes into dense and highly stable punctate assemblies. We provide evidence suggesting that PCP-mutant variant of Celsr1, Celsr1, selectively impairs lateral -interactions. Although Celsr1 mediates cell adhesion in trans, it displays increased mobility, diminishes junctional enrichment, and fails to engage in homophilic adhesion with the wild-type protein, phenotypes that can be rescued by ectopic -dimerization. Using biochemical and super-resolution microscopy approaches, we show that although Celsr1 physically interacts with PCP proteins Frizzled6 and Vangl2, it fails to organize these proteins into asymmetric junctional complexes. Our results suggest mammalian Celsr1 functions not only as a -adhesive homodimeric bridge, but also as an organizer of intercellular Frizzled6 and Vangl2 asymmetry through lateral, -interactions.
为了协调组织内的集体极化,平面细胞极性(PCP)蛋白在细胞连接处呈现不对称分布,这是 PCP 的一个保守特征,需要非典型钙粘蛋白 Celsr1。我们报告说,小鼠 Celsr1 既参与了 - 和 - 相互作用,又形成了密集且高度稳定的点状组装。我们提供的证据表明,PCP 突变型 Celsr1 变体 Celsr1 选择性地损害了侧向 - 相互作用。尽管 Celsr1 在转染中介导细胞黏附,但它的流动性增加,结合到连接处的丰度降低,并且不能与野生型蛋白发生同源黏附,这些表型可以通过异位 - 二聚化来挽救。使用生化和超分辨率显微镜方法,我们表明尽管 Celsr1 与 PCP 蛋白 Frizzled6 和 Vangl2 具有物理相互作用,但它不能将这些蛋白组织成不对称的连接复合物。我们的结果表明,哺乳动物 Celsr1 不仅作为 - 黏附同源二聚体桥发挥作用,而且还通过侧向 - 相互作用作为细胞间 Frizzled6 和 Vangl2 不对称性的组织者发挥作用。