Department of Biomolecular Chemistry, University of Wisconsin-Madison School of Medicine and Public Health, Madison, WI 53706.
Structural Genomics Consortium, University of Toronto, Toronto, ON M5G 1L7, Canada.
Proc Natl Acad Sci U S A. 2017 Sep 12;114(37):E7707-E7716. doi: 10.1073/pnas.1709120114. Epub 2017 Aug 29.
The conserved coat protein complex II (COPII) mediates the initial steps of secretory protein trafficking by assembling onto subdomains of the endoplasmic reticulum (ER) in two layers to generate cargo-laden transport carriers that ultimately fuse with an adjacent ER-Golgi intermediate compartment (ERGIC). Here, we demonstrate that Trk-fused gene (TFG) binds directly to the inner layer of the COPII coat. Specifically, the TFG C terminus interacts with Sec23 through a shared interface with the outer COPII coat and the cargo receptor Tango1/cTAGE5. Our findings indicate that TFG binding to Sec23 outcompetes these other associations in a concentration-dependent manner and ultimately promotes outer coat dissociation. Additionally, we demonstrate that TFG tethers vesicles harboring the inner COPII coat, which contributes to their clustering between the ER and ERGIC in cells. Together, our studies define a mechanism by which COPII transport carriers are retained locally at the ER/ERGIC interface after outer coat disassembly, which is a prerequisite for fusion with ERGIC membranes.
保守的外衣蛋白复合物 II(COPII)通过在内质网(ER)的亚域上组装两层来介导分泌蛋白运输的初始步骤,从而产生携带货物的运输载体,最终与相邻的 ER-Golgi 中间隔室(ERGIC)融合。在这里,我们证明 Trk 融合基因(TFG)直接与 COPII 外套的内层结合。具体来说,TFG C 端通过与外 COPII 外套和货物受体 Tango1/cTAGE5 的共享界面与 Sec23 相互作用。我们的发现表明,TFG 与 Sec23 的结合以浓度依赖的方式取代了这些其他的结合,并最终促进了外被的解离。此外,我们证明 TFG 固定了含有内 COPII 外套的囊泡,这有助于它们在细胞内 ER 和 ERGIC 之间聚集。总之,我们的研究定义了一种机制,即 COPII 运输载体在外壳解组装后在 ER/ERGIC 界面处局部保留,这是与 ERGIC 膜融合的前提。