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Nuclear transport of single molecules: dwell times at the nuclear pore complex

机译:单分子的核转运:核孔复合体的停留时间

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摘要

The mechanism by which macromolecules are selectively translocated through the nuclear pore complex (NPC) is still essentially unresolved. Single molecule methods can provide unique information on topographic properties and kinetic processes of asynchronous supramolecular assemblies with excellent spatial and time resolution. Here, single-molecule far-field fluorescence microscopy was applied to the NPC of permeabilized cells. The nucleoporin Nup358 could be localized at a distance of 70 nm from POM121-GFP along the NPC axis. Binding sites of NTF2, the transport receptor of RanGDP, were observed in cytoplasmic filaments and central framework, but not nucleoplasmic filaments of the NPC. The dwell times of NTF2 and transportin 1 at their NPC binding sites were 5.8 ± 0.2 and 7.1 ± 0.2 ms, respectively. Notably, the dwell times of these receptors were reduced upon binding to a specific transport substrate, suggesting that translocation is accelerated for loaded receptor molecules. Together with the known transport rates, our data suggest that nucleocytoplasmic transport occurs via multiple parallel pathways within single NPCs.
机译:大分子通过核孔复合物(NPC)选择性转移的机制仍然基本上尚未解决。单分子方法可以提供出色的空间和时间分辨率,提供有关异步超分子组装的拓扑特性和动力学过程的独特信息。在这里,单分子远场荧光显微镜应用于透化细胞的鼻咽癌。核孔蛋白Nup358可以沿着NPC轴定位在距POM121-GFP 70 nm处。在NPC的胞质细丝和中央构架中观察到RanGDP的转运受体NTF2的结合位点,但在NPC的核质细丝中未观察到。 NTF2和运输蛋白1在其NPC结合位点的停留时间分别为5.8±0.2和7.1±0.2 ms。值得注意的是,这些受体与特定的运输底物结合后,它们的停留时间减少了,这表明对于负载的受体分子而言,其易位性得以加速。连同已知的转运速率,我们的数据表明核质转运是通过单个NPC内的多个平行途径发生的。

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