Laboratory of Cell Biology and Biochemistry, Department of Biological Sciences, Tokyo Metropolitan University, Tokyo, Japan.
Department of Cell Physiology, Kyorin University School of Medicine, Mitaka, Japan.
EMBO Rep. 2019 Apr;20(4). doi: 10.15252/embr.201846794. Epub 2019 Feb 25.
Rab family small GTPases are master regulators of distinct steps of intracellular vesicle trafficking in eukaryotic cells. GDP-bound cytoplasmic forms of Rab proteins are prone to aggregation due to the exposure of hydrophobic groups but the machinery that determines the fate of Rab species in the cytosol has not been elucidated in detail. In this study, we find that BAG6 (BAT3/Scythe) predominantly recognizes a cryptic portion of GDP-associated Rab8a, while its major GTP-bound active form is not recognized. The hydrophobic residues of the Switch I region of Rab8a are essential for its interaction with BAG6 and the degradation of GDP-Rab8a via the ubiquitin-proteasome system. BAG6 prevents the excess accumulation of inactive Rab8a, whose accumulation impairs intracellular membrane trafficking. BAG6 binds not only Rab8a but also a functionally distinct set of Rab family proteins, and is also required for the correct distribution of Golgi and endosomal markers. From these observations, we suggest that Rab proteins represent a novel set of substrates for BAG6, and the BAG6-mediated pathway is associated with the regulation of membrane vesicle trafficking events in mammalian cells.
Rab 家族小 GTP 酶是真核细胞内细胞囊泡运输的不同步骤的主要调控因子。由于疏水区的暴露,GDP 结合的 Rab 蛋白的细胞质形式易于聚集,但决定细胞质中 Rab 物种命运的机制尚未详细阐明。在这项研究中,我们发现 BAG6(BAT3/Scythe)主要识别 GDP 相关 Rab8a 的隐蔽部分,而其主要的 GTP 结合的活性形式则不被识别。Rab8a 的 Switch I 区域的疏水区对于其与 BAG6 的相互作用以及通过泛素-蛋白酶体系统降解 GDP-Rab8a 是必不可少的。BAG6 防止了无活性 Rab8a 的过度积累,而 Rab8a 的积累会损害细胞内膜运输。BAG6 不仅结合 Rab8a,还结合一组功能上不同的 Rab 家族蛋白,并且对于高尔基体和内体标记物的正确分布也是必需的。从这些观察结果中,我们认为 Rab 蛋白代表了 BAG6 的一组新底物,并且 BAG6 介导的途径与哺乳动物细胞中膜囊泡运输事件的调节有关。