Department of Biological Science and Technology, Tokyo University of Science, Niijuku 6-3-1, Katsusika-ku, Tokyo 125-8585, Japan.
Research Center for RNA Science, RIST, Tokyo University of Science, Niijuku 6-3-1, Katsusika-ku, Tokyo 125-8585, Japan.
Biochem Biophys Res Commun. 2014 Jul 18;450(1):519-25. doi: 10.1016/j.bbrc.2014.06.002. Epub 2014 Jun 9.
Ypt6p, the yeast homologue of mammalian Rab6, is involved in the multiple processes regulated by membrane trafficking such as vacuole maturation and membrane protein recycling. Although several lines of evidence suggest that Ypt6p is possibly localized to multiple membrane compartments, the precise localization of endogenous Ypt6p remains to be elucidated. In this study, we developed a novel method for N-terminal tagging of endogenous protein based on homologous recombination and investigated the subcellular localization and function of Ypt6p. Ypt6p and its GTP-bound form were predominantly localized to the cis- to medial-Golgi compartments whereas the GDP-bound form of Ypt6p was localized to the cytosol. Ric1p, a component of the specific GEF complex for Ypt6p, largely colocalized with Ypt6p in the early Golgi, and localization of Ypt6p changed to the cytosol in ric1Δ cells. On the other hand, Gyp6p, a putative GAP for Ypt6p, was localized to the trans-Golgi compartment and deletion of GYP6 increased the localization of Ypt6p at the trans-Golgi, suggesting that Gyp6p promotes the dissociation of Ypt6p from the Golgi when arriving at the trans-Golgi compartment. Additionally, we demonstrated that overexpression of the GDP-bound form of Ypt6p caused defective vacuole formation and recycling of Snc1p to the plasma membrane. These results suggest that the GTP-binding activity of Ypt6p is necessary for intra-Golgi trafficking and protein recycling in the early Golgi compartment.
Ypt6p 是酵母 Rab6 的同源物,参与多种受膜运输调节的过程,如液泡成熟和膜蛋白回收。尽管有几条证据表明 Ypt6p 可能定位于多个膜隔室,但内源性 Ypt6p 的精确定位仍有待阐明。在本研究中,我们开发了一种基于同源重组的新型内源性蛋白 N 端标记方法,并研究了 Ypt6p 的亚细胞定位和功能。Ypt6p 和其 GTP 结合形式主要定位于顺式到中侧高尔基体隔室,而 Ypt6p 的 GDP 结合形式则定位于细胞质。Ric1p 是 Ypt6p 的特定 GEF 复合物的组成部分,在早期高尔基体中与 Ypt6p 大量共定位,并且在 ric1Δ 细胞中 Ypt6p 的定位改变为细胞质。另一方面,Gyp6p 是 Ypt6p 的假定 GAP,定位于反式高尔基体隔室,并且 GYP6 的缺失增加了 Ypt6p 在反式高尔基体的定位,表明当到达反式高尔基体隔室时,Gyp6p 促进 Ypt6p 从高尔基体解离。此外,我们证明了 Ypt6p 的 GDP 结合形式的过表达导致液泡形成缺陷和 Snc1p 向质膜的回收循环。这些结果表明 Ypt6p 的 GTP 结合活性对于高尔基体内部运输和早期高尔基体隔室中的蛋白回收是必要的。