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Direct interaction with Nup153 mediates binding of Tpr to the periphery of the nuclear pore complex

机译:与Nup153的直接相互作用介导Tpr与核孔复合物外围的结合

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摘要

Tpr is a 267-kDa protein forming coiled coil-dominated homodimers that locate at the nucleoplasmic side of the nuclear pore complex (NPC). The proteins that tether Tpr to this location are unknown. Moreover, the question whether Tpr itself might act as a scaffold onto which other NPC components need to be assembled has not been answered to date. To assess Tpr's role as an architectural element of the NPC, we have studied the sequential disassembly and reassembly of NPCs in mitotic cells, paralleled by studies of cells depleted of Tpr as a result of posttranscriptional tpr gene silencing by RNA interference (RNAi). NPC assembly and recruitment of several nucleoporins, including Nup50, Nup93, Nup96, Nup98, Nup107, and Nup153, in anaphase/early telophase is shown to precede NPC association of Tpr in late telophase. In accordance, cellular depletion of Tpr by RNAi does not forestall binding of these nucleoporins to the NPC. In a search for proteins that moor Tpr to the NPC, we have combined the RNAi approach with affinity-chromatography and yeast two-hybrid interaction studies, leading to the identification of nucleoporin Nup153 as the binding partner for Tpr. The specificity of this interaction is demonstrated by its sensitivity to Tpr amino acid substitution mutations that abolish Tpr's ability to adhere to the NPC and affect the direct binding of Tpr to Nup153. Accordingly, cellular depletion of Nup153 by RNAi is shown to result in mislocalization of Tpr to the nuclear interior. Nup153 deficiency also causes mislocalization of Nup50 but has no direct effect on NPC localization of the other nucleoporins studied in this investigation. In summary, these results render Tpr a protein only peripherally attached to the NPC that does not act as an essential scaffold for other nucleoporins. [References: 70]
机译:Tpr是一个267 kDa的蛋白质,形成卷曲的线圈主导的同型二聚体,位于核孔复合体(NPC)的核质侧。将Tpr束缚到该位置的蛋白质是未知的。此外,迄今为止,尚未回答TPr本身是否可以充当其他NPC组件需要组装的支架的问题。为了评估Tpr作为NPC的结构元件的作用,我们研究了有丝分裂细胞中NPC的顺序分解和重组,同时研究了由于RNA干扰(RNAi)导致转录后tpr基因沉默导致Tpr耗尽的细胞。 NPC组装和募集数个核孔蛋白,包括Nup50,Nup93,Nup96,Nup98,Nup107和Nup153,处于晚期/晚期末期,在末期Tpr的NPC缔合之前。因此,RNAi对Tpr的细胞耗竭不会阻止这些核孔蛋白与NPC的结合。在寻找将Tpr锚定到NPC的蛋白质时,我们将RNAi方法与亲和层析和酵母两杂交相互作用研究相结合,从而确定了核孔蛋白Nup153作为Tpr的结合伴侣。这种相互作用的特异性由其对Tpr氨基酸取代突变的敏感性证明,该突变消除了Tpr粘附于NPC的能力并影响Tpr与Nup153的直接结合。因此,显示RNAi对Nup153的细胞耗竭会导致Tpr在核内部的定位错误。 Nup153缺乏也会引起Nup50的定位错误,但对本研究中研究的其他核孔蛋白的NPC定位没有直接影响。总而言之,这些结果使得Tpr仅在外围附着在NPC上,而不能作为其他核孔蛋白的必需支架。 [参考:70]

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