Institute of Biomedicine, Göteborg University, Gothenburg, SE-40530, Sweden.
Development. 2010 Jul;137(14):2427-37. doi: 10.1242/dev.052605.
Cellular junction formation is an elaborate process that is dependent on the regulated synthesis, assembly and membrane targeting of constituting components. Here, we report on three Drosophila Ly6-like proteins essential for septate junction (SJ) formation. SJs provide a paracellular diffusion barrier and appear molecularly and structurally similar to vertebrate paranodal septate junctions. We show that Crooked (Crok), a small GPI-anchored Ly6-like protein, is required for septa formation and barrier functions. In embryos that lack Crok, SJ components are produced but fail to accumulate at the plasma membrane. Crok is detected in intracellular puncta and acts tissue-autonomously, which suggests that it resides in intracellular vesicles to assist the cell surface localization of SJ components. In addition, we demonstrate that two related Ly6 proteins, Coiled (Cold) and Crimpled (Crim), are required for SJ formation and function in a tissue-autonomous manner, and that Cold also localizes to intracellular vesicles. Specifically, Crok and Cold are required for correct membrane trafficking of Neurexin IV, a central SJ component. The non-redundant requirement for Crok, Cold, Crim and Boudin (Bou; another Ly6 protein that was recently shown to be involved in SJ formation) suggests that members of this conserved family of proteins cooperate in the assembly of SJ components, possibly by promoting core SJ complex formation in intracellular compartments associated with membrane trafficking.
细胞连接的形成是一个精细的过程,依赖于组成成分的合成、组装和膜靶向的调控。在这里,我们报告了三个对隔膜连接(SJ)形成至关重要的果蝇 Ly6 样蛋白。SJ 提供了细胞旁扩散屏障,在分子和结构上与脊椎动物的旁节段隔膜连接相似。我们表明,小 GPI 锚定 Ly6 样蛋白 Crooked(Crok)对于隔膜的形成和屏障功能是必需的。在缺乏 Crok 的胚胎中,SJ 成分被产生但未能在质膜上积累。Crok 在细胞内的斑点中被检测到,并具有组织自主性,这表明它位于细胞内囊泡中以协助 SJ 成分在细胞表面的定位。此外,我们证明了两个相关的 Ly6 蛋白,Coiled(Cold)和Crimpled(Crim),以组织自主性的方式对于 SJ 的形成和功能是必需的,并且 Cold 也定位于细胞内囊泡。具体而言,Crok 和 Cold 对于中央 SJ 成分 Neurexin IV 的正确膜运输是必需的。Crok、Cold、Crim 和 Boudin(Bou;另一个最近被证明参与 SJ 形成的 Ly6 蛋白)的非冗余需求表明,这个保守的蛋白家族成员在 SJ 成分的组装中合作,可能通过促进与膜运输相关的细胞内隔室中的核心 SJ 复合物形成来实现。