Saito Masaki, Otsu Wataru, Hsu Kuo-Shun, Chuang Jen-Zen, Yanagisawa Teruyuki, Shieh Vincent, Kaitsuka Taku, Wei Fan-Yan, Tomizawa Kazuhito, Sung Ching-Hwa
Department of Molecular Pharmacology, Graduate School of Medicine, Tohoku University, Aoba-ku Sendai, Japan
Department of Cellular Signaling, Graduate School of Pharmaceutical Sciences, Tohoku University, Aoba-ku Sendai, Japan.
EMBO Rep. 2017 Aug;18(8):1460-1472. doi: 10.15252/embr.201744204. Epub 2017 Jun 12.
The primary cilium is a plasma membrane-protruding sensory organelle that undergoes regulated assembly and resorption. While the assembly process has been studied extensively, the cellular machinery that governs ciliary resorption is less well understood. Previous studies showed that the ciliary pocket membrane is an actin-rich, endocytosis-active periciliary subdomain. Furthermore, Tctex-1, originally identified as a cytoplasmic dynein light chain, has a dynein-independent role in ciliary resorption upon phosphorylation at Thr94. Here, we show that the remodeling and endocytosis of the ciliary pocket membrane are accelerated during ciliary resorption. This process depends on phospho(T94)Tctex-1, actin, and dynamin. Mechanistically, Tctex-1 physically and functionally interacts with the actin dynamics regulators annexin A2, Arp2/3 complex, and Cdc42. Phospho(T94)Tctex-1 is required for Cdc42 activation before the onset of ciliary resorption. Moreover, inhibiting clathrin-dependent endocytosis or suppressing Rab5GTPase on early endosomes effectively abrogates ciliary resorption. Taken together with the epistasis functional assays, our results support a model in which phospho(T94)Tctex-1-regulated actin polymerization and periciliary endocytosis play an active role in orchestrating the initial phase of ciliary resorption.
初级纤毛是一种突出于质膜的感觉细胞器,其组装和再吸收过程受到调控。虽然对组装过程已进行了广泛研究,但对控制纤毛再吸收的细胞机制了解较少。先前的研究表明,纤毛口袋膜是富含肌动蛋白、具有内吞活性的纤毛周围亚结构域。此外,最初被鉴定为细胞质动力蛋白轻链的Tctex-1在苏氨酸94位点磷酸化后,在纤毛再吸收中具有不依赖动力蛋白的作用。在此,我们表明在纤毛再吸收过程中,纤毛口袋膜的重塑和内吞作用会加速。这一过程依赖于磷酸化(T94)的Tctex-1、肌动蛋白和发动蛋白。从机制上讲,Tctex-1在物理和功能上与肌动蛋白动力学调节因子膜联蛋白A2、Arp2/3复合物和Cdc42相互作用。在纤毛再吸收开始前,磷酸化(T94)的Tctex-1是Cdc42激活所必需的。此外,抑制网格蛋白依赖性内吞作用或抑制早期内体上的Rab5GTP酶可有效消除纤毛再吸收。结合上位性功能分析,我们的结果支持一个模型,即磷酸化(T94)的Tctex-1调节的肌动蛋白聚合和纤毛周围内吞作用在协调纤毛再吸收的初始阶段发挥积极作用。