Feathers J Ryan, Vignogna Ryan C, Fromme J Christopher
Department of Molecular Biology & Genetics and Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, NY, 14850, USA.
201 Schultz Laboratory, Princeton University, Princeton, NJ, 08544, USA.
Nat Commun. 2024 Dec 4;15(1):10561. doi: 10.1038/s41467-024-54869-9.
Rab GTPases act as molecular switches to regulate organelle homeostasis and membrane trafficking. Rab6 plays a central role in regulating cargo flux through the Golgi and is activated via nucleotide exchange by the Ric1-Rgp1 protein complex. Ric1-Rgp1 is conserved throughout eukaryotes but the structural and mechanistic basis for its function has not been established. Here we report the cryoEM structure of a Ric1-Rgp1-Rab6 complex representing a key intermediate of the nucleotide exchange reaction. Ric1-Rgp1 interacts with the nucleotide-binding domain of Rab6 using an uncharacterized helical domain, which we establish as a RabGEF domain by identifying residues required for Rab6 activation. Unexpectedly, the complex uses an arrestin fold to interact with the Rab6 hypervariable domain, indicating that interactions with the unstructured C-terminal regions of Rab GTPases may be a common binding mechanism used by their activators. Collectively, our findings provide a detailed mechanistic understanding of regulated Rab6 activation at the Golgi.
Rab GTP 酶作为分子开关来调节细胞器稳态和膜运输。Rab6 在调节货物通过高尔基体的通量中起核心作用,并通过 Ric1 - Rgp1 蛋白复合物进行核苷酸交换而被激活。Ric1 - Rgp1 在整个真核生物中是保守的,但其功能的结构和机制基础尚未明确。在这里,我们报道了 Ric1 - Rgp1 - Rab6 复合物的冷冻电镜结构,该结构代表了核苷酸交换反应的一个关键中间体。Ric1 - Rgp1 使用一个未被表征的螺旋结构域与 Rab6 的核苷酸结合结构域相互作用,我们通过鉴定 Rab6 激活所需的残基将其确定为 RabGEF 结构域。出乎意料的是,该复合物利用一个抑制蛋白折叠结构域与 Rab6 的高变结构域相互作用,这表明与 Rab GTP 酶的无结构 C 末端区域的相互作用可能是其激活剂使用的一种常见结合机制。总的来说,我们的研究结果为高尔基体上 Rab6 的调控激活提供了详细的机制理解。