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Plasticity of an Ultrafast Interaction between Nucleoporins and Nuclear Transport Receptors

机译:核蛋白与核转运受体之间超快速相互作用的可塑性。

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摘要

The mechanisms by which intrinsically disordered proteins engage in rapid and highly selective binding is a subject of considerable interest and represents a central paradigmto nuclear porecomplex (NPC) function, where nuclear transport receptors (NTRs) move through the NPC by binding disordered phenylalanine- glycine-rich nucleoporins (FG-Nups). Combining single-molecule fluorescence, molecular simulations, and nuclear magnetic resonance, we show that a rapidly fluctuating FG-Nup populates an ensemble of conformations that are prone to bind NTRs with near diffusion-limited on rates, as shown by stopped-flow kinetic measurements. This is achieved using multiple, minimalistic, low-affinity binding motifs that are in rapid exchange when engaging with the NTR, allowing the FG-Nup to maintain an unexpectedly high plasticity in its bound state. We propose that these exceptional physical characteristics enable a rapid and specific transport mechanism in the physiological context, a notion supported by single molecule in-cell assays on intact NPCs.
机译:内在无序蛋白参与快速和高度选择性结合的机制是一个令人关注的问题,代表了中心范式核孔复合体(NPC)功能,其中核转运受体(NTRs)通过结合无序苯丙氨酸-甘氨酸-来穿过NPC。富核孔蛋白(FG-Nups)。结合单分子荧光,分子模拟和核磁共振,我们显示出快速波动的FG-Nup构成了一系列构象,这些构象易于结合NTR,且扩散速率受到限制,如停流动力学测量所示。这是通过使用多个与NTR接合时可以快速交换的极简主义,低亲和力的结合基序来实现的,从而使FG-Nup在其结合状态下保持出乎意料的高可塑性。我们建议这些特殊的物理特性在生理环境中实现快速而特定的转运机制,这一观念得到了完整NPC上单分子细胞内测定的支持。

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