首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Flexible phenylalanine-glycine nucleoporins as entropic barriers to nucleocytoplasmic transport
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Flexible phenylalanine-glycine nucleoporins as entropic barriers to nucleocytoplasmic transport

机译:柔性苯丙氨酸-甘氨酸核孔蛋白作为核质运输的熵屏障

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摘要

Natively unfolded phenylalanine-glycine (FG)-repeat domains are alleged to form the physical constituents of the selective barrier-gate in nuclear pore complexes during nucleocytoplasmic transport. Presently, the biophysical mechanism behind the selective gate remains speculative because of a lack of information regarding the nanomechanical properties of the FG domains. In this work, we have applied the atomic force microscope to measure the mechanical response of individual and clusters of FG molecules. Single-molecule force spectroscopy reveals that FG molecules are unfolded and highly flexible. To provide insight into the selective gating mechanism, an experimental platform has been constructed to study the collective behavior of surface-tethered FG molecules at the nanoscale. Measurements indicate that the collective behavior of such FG molecules gives rise to an exponentially decaying long-range steric repulsive force. This finding indicates that the molecules are thermally mobile in an extended polymer brush-like conformation. This assertion is confirmed by observing that the brush-like conformation undergoes a reversible collapse transition in less polar solvent conditions. These findings reveal how FG-repeat domains may simultaneously function as an entropic barrier and a selective trap in the near-field interaction zone of nuclear pore complexes; i.e., selective gate.
机译:据称天然展开的苯丙氨酸-甘氨酸(FG)-重复结构域在核质运输过程中形成了核孔复合物中选择性屏障门的物理成分。当前,由于缺乏有关FG结构域的纳米机械性能的信息,选择性门后面的生物物理机制仍然是推测性的。在这项工作中,我们应用了原子力显微镜来测量FG分子的单个分子和簇的机械响应。单分子力谱显示FG分子是展开的且高度灵活。为了提供对选择性门控机制的了解,已构建了一个实验平台来研究纳米级表面束缚的FG分子的集体行为。测量表明,这种FG分子的集体行为引起了指数衰减的远距离空间排斥力。该发现表明分子在扩展的聚合物刷状构象中是热移动的。通过观察到刷状构象在极性较小的溶剂条件下经历了可逆的塌陷转变,从而证实了这一断言。这些发现揭示了FG-重复结构域如何在核孔复合体的近场相互作用区内同时充当熵屏障和选择性陷阱。即选择性门。

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