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Article Two Differential Binding Mechanisms of FG-Nucleoporins and Nuclear Transport Receptors

机译:第二条FG-核蛋白和核转运受体的差异结合机制

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Summary Phenylalanine-glycine-rich nucleoporins (FG-Nups) are intrinsically disordered proteins, constituting the selective barrier of the nuclear pore complex (NPC). Previous studies showed that nuclear transport receptors (NTRs) were found to interact with FG-Nups by forming an “archetypal-fuzzy” complex through the rapid formation and breakage of interactions with many individual FG motifs. Here, we use single-molecule studies combined with atomistic simulations to show that, in sharp contrast, FG-Nup214 undergoes a coupled reconfiguration-binding mechanism when interacting with the export receptor CRM1. Association and dissociation rate constants are more than an order of magnitude lower than in the archetypal-fuzzy complex between FG-Nup153 and NTRs. Unexpectedly, this behavior appears not to be encoded selectively into CRM1 but rather into the FG-Nup214 sequence. The same?distinct binding mechanisms are unperturbed in O-linked β-N-acetylglucosamine-modified FG-Nups. Our results have implications for differential roles of distinctly spatially distributed FG-Nup?NTR interactions in the cell.
机译:小结富含苯丙氨酸-甘氨酸的核孔蛋白(FG-Nups)是内在无序的蛋白,构成了核孔复合物(NPC)的选择性屏障。先前的研究表明,核转运受体(NTR)被发现与FG-Nups相互作用,是通过快速形成和破坏与许多单个FG图案的相互作用而形成“原型模糊”复合体。在这里,我们使用单分子研究与原子模拟相结合,显示出与之形成鲜明对比的是,FG-Nup214与出口受体CRM1相互作用时经历了偶联的重构结合机制。缔合和解离速率常数比FG-Nup153和NTR之间的原型模糊复合体低一个数量级。出乎意料的是,此行为似乎没有被选择性地编码为CRM1,而是被编码为FG-Nup214序列。在O-连接的β-N-乙酰氨基葡糖修饰的FG-Nups中,相同的独特结合机制不受干扰。我们的结果暗示了细胞中空间上分布的FG-Nup?NTR相互作用的不同作用。

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