Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee, USA; Center for Structural Biology, Vanderbilt University, Nashville, Tennessee, USA.
Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee, USA.
J Biol Chem. 2022 Nov;298(11):102523. doi: 10.1016/j.jbc.2022.102523. Epub 2022 Sep 26.
Retromer (VPS26/VPS35/VPS29 subunits) assembles with multiple sorting nexin proteins on membranes to mediate endosomal recycling of transmembrane protein cargoes. Retromer has been implicated in other cellular processes, including mitochondrial homeostasis, nutrient sensing, autophagy, and fission events. Mechanisms for mammalian retromer assembly remain undefined, and retromer engages multiple sorting nexin proteins to sort cargoes to different destinations. Published structures demonstrate mammalian retromer forms oligomers in vitro, but several structures were poorly resolved. We report here improved retromer oligomer structures using single-particle cryo-EM by combining data collected from tilted specimens with multiple advancements in data processing, including using a 3D starting model for enhanced automated particle picking in RELION. We used a retromer mutant (3KE retromer) that breaks VPS35-mediated interfaces to determine a structure of a new assembly interface formed by the VPS26A and VPS35 N-termini. The interface reveals how an N-terminal VPS26A arrestin saddle can link retromer chains by engaging a neighboring VPS35 N- terminus, on the opposite side from the well-characterized C-VPS26/N-VPS35 interaction observed within heterotrimers. The new interaction interface exhibits substantial buried surface area (∼7000 Å) and further suggests that metazoan retromer may serve as an adaptable scaffold.
Retromer(VPS26/VPS35/VPS29 亚基)与多个分选连接蛋白在膜上组装,介导跨膜蛋白货物的内体再循环。Retromer 已被牵涉到其他细胞过程中,包括线粒体稳态、营养感应、自噬和裂变事件。哺乳动物 Retromer 组装的机制尚未定义,Retromer 与多个分选连接蛋白结合以将货物分拣到不同的目的地。已发表的结构表明哺乳动物 Retromer 在体外形成寡聚体,但有几个结构解析度较差。我们在这里使用倾斜标本的单颗粒冷冻电镜数据结合数据处理的多个改进,包括在 RELION 中使用 3D 起始模型来增强自动粒子挑选,报告了改进的 Retromer 寡聚体结构。我们使用了一种破坏 VPS35 介导的界面的 Retromer 突变体(3KE Retromer)来确定由 VPS26A 和 VPS35 N 末端形成的新组装界面的结构。该界面揭示了 N 末端 VPS26A 抑制蛋白鞍如何通过与相邻 VPS35 N 末端结合来连接 Retromer 链,而不是在异三聚体中观察到的特征明确的 C-VPS26/N-VPS35 相互作用的相反侧。新的相互作用界面表现出大量的埋藏表面积(约 7000Å),并进一步表明后生动物 Retromer 可能作为一种适应性支架。