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The Nup358-RanGAP Complex Is Required for Efficient Importin α/β-dependent Nuclear Import

机译:Nup358-RanGAP复合物是有效导入α/β依赖性核导入所必需的

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摘要

In vertebrate cells, the nucleoporin Nup358/RanBP2 is a major component of the filaments that emanate from the nuclear pore complex into the cytoplasm. Nup358 forms a complex with SUMOylated RanGAP1, the GTPase activating protein for Ran. RanGAP1 plays a pivotal role in the establishment of a RanGTP gradient across the nuclear envelope and, hence, in the majority of nucleocytoplasmic transport pathways. Here, we investigate the roles of the Nup358-RanGAP1 complex and of soluble RanGAP1 in nuclear protein transport, combining in vivo and in vitro approaches. Depletion of Nup358 by RNA interference led to a clear reduction of importin α/β-dependent nuclear import of various reporter proteins. In vitro, transport could be partially restored by the addition of importin β, RanBP1, and/or RanGAP1 to the transport reaction. In intact Nup358-depleted cells, overexpression of importin β strongly stimulated nuclear import, demonstrating that the transport receptor is the most rate-limiting factor at reduced Nup358-concentrations. As an alternative approach, we used antibody-inhibition experiments. Antibodies against RanGAP1 inhibited the enzymatic activity of soluble and nuclear pore–associated RanGAP1, as well as nuclear import and export. Although export could be fully restored by soluble RanGAP, import was only partially rescued. Together, these data suggest a dual function of the Nup358-RanGAP1 complex as a coordinator of importin β recycling and reformation of novel import complexes.
机译:在脊椎动物细胞中,核孔蛋白Nup358 / RanBP2是从核孔复合体散发到细胞质中的细丝的主要成分。 Nup358与SUMOylated RanGAP1(Ran的GTPase激活蛋白)形成复合物。 RanGAP1在跨核被膜建立RanGTP梯度并因此在大多数核质转运途径中起着关键作用。在这里,我们结合体内和体外方法研究Nup358-RanGAP1复合物和可溶性RanGAP1在核蛋白运输中的作用。 RNA干扰对Nup358的耗竭导致各种报告蛋白的Importinα/β依赖性核输入明显减少。在体外,可以通过在运输反应中添加importinβ,RanBP1和/或RanGAP1来部分恢复运输。在完整的Nup358耗尽细胞中,importinβ的过表达强烈刺激了核的输入,表明转运受体是Nup358浓度降低时最大的限速因素。作为一种替代方法,我们使用了抗体抑制实验。抗RanGAP1的抗体抑制了可溶性和与核孔相关的RanGAP1的酶活性以及核的进出口。尽管可以通过可溶性RanGAP完全恢复出口,但是进口只能部分挽救。这些数据共同表明,Nup358-RanGAP1复合物具有双重功能,可作为输入蛋白β再循环和新型输入复合物的再形成的协调剂。

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