Szentgyörgyi Viktória, Spang Anne
Biozentrum, University of Basel, 4056 Basel, Switzerland.
J Cell Sci. 2023 Mar 15;136(6). doi: 10.1242/jcs.260471. Epub 2023 Mar 6.
Cargo delivery from one compartment to the next relies on the fusion of vesicles with different cellular organelles in a process that requires the concerted action of tethering factors. Although all tethers act to bridge vesicle membranes to mediate fusion, they form very diverse groups as they differ in composition, and in their overall architecture and size, as well as their protein interactome. However, their conserved function relies on a common design. Recent data on class C Vps complexes indicates that tethers play a significant role in membrane fusion beyond vesicle capturing. Furthermore, these studies provide additional mechanistic insights into membrane fusion events and reveal that tethers should be considered as key players of the fusion machinery. Moreover, the discovery of the novel tether FERARI complex has changed our understanding of cargo transport in the endosomal system as it has been shown to mediate 'kiss-and-run' vesicle-target membrane interactions. In this Cell Science at a Glance and the accompanying poster, we compare the structure of the coiled-coil and the multisubunit CATCHR and class C Vps tether families on the basis of their functional analogy. We discuss the mechanism of membrane fusion, and summarize how tethers capture vesicles, mediate membrane fusion at different cellular compartments and regulate cargo traffic.
货物从一个区室运输到下一个区室依赖于囊泡与不同细胞器的融合,这一过程需要拴系因子的协同作用。尽管所有拴系因子都起到连接囊泡膜以介导融合的作用,但它们由于组成、整体结构和大小以及蛋白质相互作用组的不同而形成了非常多样化的群体。然而,它们保守的功能依赖于一种共同的设计。关于C类Vps复合体的最新数据表明,拴系因子在膜融合中所起的作用不仅仅是捕获囊泡。此外,这些研究为膜融合事件提供了更多的机制见解,并揭示拴系因子应被视为融合机制的关键参与者。此外,新型拴系因子FERARI复合体的发现改变了我们对内体系统中货物运输的理解,因为它已被证明能介导“吻-跑”式囊泡-靶膜相互作用。在这篇“细胞科学一览”文章及随附的海报中,我们基于功能类比比较了卷曲螺旋和多亚基CATCHR以及C类Vps拴系因子家族的结构。我们讨论了膜融合的机制,并总结了拴系因子如何捕获囊泡、在不同细胞区室介导膜融合以及调节货物运输。