Institute of Plant and Microbial Biology, Academia Sinica, Taipei, Taiwan.
Traffic. 2010 Jul 1;11(7):912-30. doi: 10.1111/j.1600-0854.2010.01064.x. Epub 2010 Mar 30.
Intracellular trafficking of the nonstructural movement proteins of plant viruses plays a crucial role in sequestering and targeting viral macromolecules in and between cells. Many of the movement proteins traffic in unconventional, yet mechanistically unknown, pathways to localize to the cell periphery. Here we study trafficking strategies associated with two integral membrane movement proteins TGBp2 and TGBp3 of Potexvirus in yeast. We demonstrate that this simple eukaryote recapitulates the targeting of TGBp2 to the peripheral bodies at the cell cortex by TGBp3. We found that these viral movement proteins traffic as an approximately 1:1 stoichiometric protein complex that further polymerizes to form punctate structures. Many punctate structures depart from the perinuclear endoplasmic reticulum (ER) and move along the tubular ER to the cortical ER, supporting that it involves a lateral sorting event via the ER network. Furthermore, the peripheral bodies are associated with cortical ER tubules that are marked by the ER shaping protein reticulon in both yeast and plants. Thus, our data support a model in which the peripheral bodies partition into and/or stabilize at highly curved membrane environments.
植物病毒非结构运动蛋白的细胞内运输在隔离和靶向病毒大分子在细胞内和细胞间的运输中起着至关重要的作用。许多运动蛋白通过非常规的、但机制未知的途径运输,以定位到细胞边缘。在这里,我们研究了与 Potexvirus 的两个完整膜运动蛋白 TGBp2 和 TGBp3 相关的运输策略。我们证明,这种简单的真核生物通过 TGBp3 将 TGBp2 靶向到细胞皮层的外周体。我们发现这些病毒运动蛋白作为一个大约 1:1 的化学计量蛋白复合物运输,进一步聚合形成点状结构。许多点状结构从核周内质网(ER)离开,并沿着管状 ER 移动到皮质 ER,这表明它涉及通过 ER 网络的侧向分拣事件。此外,外周体与皮质 ER 小管相关,这些小管在酵母和植物中都由 ER 成型蛋白 reticulon 标记。因此,我们的数据支持这样一种模型,即外周体分隔成和/或稳定在高度弯曲的膜环境中。