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Mechanism of assembly of a substrate-transfer complex during tail-anchored protein targeting

机译:尾锚蛋白靶向过程中底物转移复合物的组装机理

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摘要

Tail-anchored (TA) proteins, defined as having a single transmembrane helix at their C terminus, are post-translationally targeted to the endoplasmic reticulum membrane by the guided entry of TA proteins (GET) pathway. In yeast, the handover of TA substrates is mediated by the heterotetrameric Get4/Get5 complex (Get4/5), which tethers the co-chaperone Sgt2 to the targeting factor, the Get3 ATPase. Binding of Get4/5 to Get3 is critical for efficient TA targeting; however, questions remain about the formation of the Get3·Get4/5 complex. Here we report crystal structures of a Get3·Get4/5 complex from Saccharomyces cerevisiae at 2.8 and 6.0 Å that reveal a novel interface between Get3 and Get4 dominated by electrostatic interactions. Kinetic and mutational analyses strongly suggest that these structures represent an on-pathway intermediate that rapidly assembles and then rearranges to the final Get3·Get4/5 complex. Furthermore, we provide evidence that the Get3·Get4/5 complex is dominated by a single Get4/5 heterotetramer bound to one monomer of a Get3 dimer, uncovering an intriguing asymmetry in the Get4/5 heterotetramer upon Get3 binding. Ultrafast diffusion-limited electrostatically driven Get3·Get4/5 association enables Get4/5 to rapidly sample and capture Get3 at different stages of the GET pathway.
机译:尾锚定(TA)蛋白定义为在其C末端具有单个跨膜螺旋,通过TA蛋白(GET)途径的引导进入翻译后靶向内质网。在酵母中,TA底物的转移是由异四聚体Get4 / Get5复合物(Get4 / 5)介导的,该复合物将伴侣伴侣Sgt2绑定到靶向因子Get3 ATPase。 Get4 / 5与Get3的绑定对于有效的TA定位至关重要。但是,关于Get3·Get4 / 5复合体的形成仍然存在疑问。在这里,我们报道了酿酒酵母在2.8和6.0Å处的Get3·Get4 / 5复合物的晶体结构,揭示了由静电相互作用主导的Get3和Get4之间的新型界面。动力学和突变分析强烈表明,这些结构代表了一种快速组装并随后重排为最终Get3·Get4 / 5复合体的途中中间体。此外,我们提供的证据表明,Get3·Get4 / 5复合物由与Get3二聚体的一个单体结合的单个Get4 / 5异四聚体占主导,在Get3结合后在Get4 / 5异四聚体中发现了一个有趣的不对称性。超快扩散限制的静电驱动Get3·Get4 / 5关联使Get4 / 5可以在GET途径的不同阶段快速采样和捕获Get3。

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