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首页> 外文期刊>Molecular biology of the cell >The SUMO-specific isopeptidase SENP2 associates dynamically with nuclear pore complexes through interactions with karyopherins and the Nup107-160 nucleoporin subcomplex
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The SUMO-specific isopeptidase SENP2 associates dynamically with nuclear pore complexes through interactions with karyopherins and the Nup107-160 nucleoporin subcomplex

机译:SUMO特异性异肽酶SENP2通过与核蛋白和Nup107-160核孔蛋白亚复合物的相互作用而与核孔复合物动态缔合

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摘要

The association of small, ubiquitin-related modifier-specific isopeptidases (also known as sentrin-specific proteases, or SENPs) with nuclear pore complexes (NPCs) is conserved in eukaryotic organisms ranging from yeast to mammals. However, the functional significance of this association remains poorly understood, particularly in mammalian cells. In this study, we have characterized the molecular basis for interactions between SENP2 and NPCs in human cells. Using fluorescence recovery after photobleaching, we demonstrate that SENP2, although concentrated at the nuclear basket, is dynamically associated with NPCs. This association is mediated by multiple targeting elements within the N-terminus of SENP2 that function cooperatively to mediate NPC localization. One of these elements consists of a high-affinity nuclear localization signal that mediates indirect tethering to FG-repeat-containing nucleoporins through karyopherins. A second element mediates interactions with the Nup107-160 nucleoporin subcomplex. A third element consists of a nuclear export signal. Collectively, our findings reveal that SENP2 is tethered to NPCs through a complex interplay of interactions with nuclear import and export receptors and nucleoporins. Disruption of these interactions enhances SENP2 substrate accessibility, suggesting an important regulatory node in the SUMO pathway.
机译:在从酵母到哺乳动物的真核生物中,小的,泛素相关的修饰物特异性异肽酶(也称为哨蛋白特异性蛋白酶或SENP)与核孔复合物(NPC)的关联是保守的。但是,这种关联的功能意义仍然知之甚少,尤其是在哺乳动物细胞中。在这项研究中,我们已经表征了人细胞中SENP2和NPC之间相互作用的分子基础。使用光漂白后的荧光恢复,我们证明SENP2尽管集中在核篮上,但与NPC动态相关。这种关联是由SENP2 N末端内的多个靶向元件介导的,这些元件协同作用以介导NPC定位。这些元素之一由高亲和力的核定位信号组成,该信号通过核蛋白介导与含FG重复的核孔蛋白的间接束缚。第二个元素介导与Nup107-160核孔蛋白亚复合物的相互作用。第三个要素是核出口信号。总的来说,我们的发现表明SENP2通过与核进出口受体和核孔蛋白相互作用的复杂相互作用而被束缚在NPC上。这些相互作用的破坏增强了SENP2底物的可及性,表明了SUMO途径中的重要调控节点。

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