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Entry into the nuclear pore complex is controlled by a cytoplasmic exclusion zone containing dynamic GLFG-repeat nucleoporin domains.

机译:进入核孔复合体是由包含动态GLFG重复核孔蛋白结构域的胞质排斥区控制的。

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摘要

Nuclear pore complexes (NPCs) mediate nucleocytoplasmic movement. The central channel contains proteins with phenylalanine-glycine (FG) repeats, or variations (GLFG, glycine-leucine-phenylalanine-glycine). These are ‘intrinsically disordered’ and often represent weak interaction sites that become ordered upon interaction. We investigated this possibility during nuclear transport. Using electron microscopy of S. cerevisiae, we show that NPC cytoplasmic filaments form a dome-shaped structure enclosing GLFG domains. GLFG domains extend out of this structure and are part of an ‘exclusion zone’ that might act as a partial barrier to entry of transport-inert proteins. The anchor domain of a GLFG nucleoporin locates exclusively to the central channel. By contrast, the localisation of the GLFG domains varied between NPCs and could be cytoplasmic, central or nucleoplasmic and could stretch up to 80 nm. These results suggest a dynamic exchange between ordered and disordered states. In contrast to diffusion through the NPC, transport cargoes passed through the exclusion zone and accumulated near the central plane. We also show that movement of cargo through the NPC is accompanied by relocation of GLFG domains, suggesting that binding, restructuring and movement of these domains could be part of the translocation mechanism.
机译:核孔复合物(NPC)介导核质运动。中央通道包含具有苯丙氨酸-甘氨酸(FG)重复或变异(GLFG,甘氨酸-亮氨酸-苯丙氨酸-甘氨酸)的蛋白质。这些是“内在无序的”,通常代表弱的交互位点,这些位点在交互时会变得有序。我们调查了核运输过程中的这种可能性。使用酿酒酵母的电子显微镜,我们显示NPC胞质细丝形成封闭GLFG域的圆顶形结构。 GLFG结构域延伸出该结构,并且是“排除区”的一部分,该区可能会成为运输惰性蛋白进入的部分障碍。 GLFG核孔蛋白的锚定域仅位于中央通道。相比之下,GLFG结构域的定位在NPC之间有所不同,可能是胞质的,中央的或核质的,并且可以延伸到80 nm。这些结果表明有序和无序状态之间的动态交换。与通过人大扩散相比,运输货物通过禁区并在中央平面附近聚集。我们还表明,货物通过NPC的运输伴随着GLFG域的重新定位,这表明这些域的绑定,重组和移动可能是易位机制的一部分。

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