Marelli M, Aitchison J D, Wozniak R W
Department of Cell Biology, University of Alberta, Edmonton, Alberta, Canada T6G 2H7.
J Cell Biol. 1998 Dec 28;143(7):1813-30. doi: 10.1083/jcb.143.7.1813.
We have identified a specific karyopherin docking complex within the yeast nuclear pore complex (NPC) that contains two novel, structurally related nucleoporins, Nup53p and Nup59p, and the NPC core protein Nup170p. This complex was affinity purified from cells expressing a functional Nup53p-protein A chimera. The localization of Nup53p, Nup59p, and Nup170p within the NPC by immunoelectron microscopy suggests that the Nup53p-containing complex is positioned on both the cytoplasmic and nucleoplasmic faces of the NPC core. In association with the isolated complex, we have also identified the nuclear transport factor Kap121p (Pse1p). Using in vitro binding assays, we showed that each of the nucleoporins interacts with one another. However, the association of Kap121p with the complex is mediated by its interaction with Nup53p. Moreover, Kap121p is the only beta-type karyopherin that binds Nup53p suggesting that Nup53p acts as a specific Kap121p docking site. Kap121p can be released from Nup53p by the GTP bound form of the small GTPase Ran. The physiological relevance of the interaction between Nup53p and Kap121p was further underscored by the observation that NUP53 mutations alter the subcellular distribution of Kap121p and the Kap121p- mediated import of a ribosomal L25 reporter protein. Interestingly, Nup53p is specifically phosphorylated during mitosis. This phenomenon is correlated with a transient decrease in perinuclear-associated Kap121p.
我们在酵母核孔复合体(NPC)中鉴定出一种特定的核转运蛋白对接复合体,它包含两种新的、结构相关的核孔蛋白Nup53p和Nup59p,以及NPC核心蛋白Nup170p。该复合体是从表达功能性Nup53p-蛋白A嵌合体的细胞中通过亲和纯化得到的。免疫电子显微镜观察Nup53p、Nup59p和Nup170p在NPC中的定位表明,含有Nup53p的复合体位于NPC核心的胞质面和核质面上。与分离出的复合体相关联,我们还鉴定出了核转运因子Kap121p(Pse1p)。通过体外结合试验,我们发现每种核孔蛋白之间都相互作用。然而,Kap121p与该复合体的结合是通过其与Nup53p的相互作用介导的。此外,Kap121p是唯一与Nup53p结合的β型核转运蛋白,这表明Nup53p作为特定的Kap121p对接位点。小GTP酶Ran的GTP结合形式可使Kap121p从Nup53p上释放。NUP53突变改变了Kap121p的亚细胞分布以及Kap121p介导的核糖体L25报告蛋白的导入,这一观察结果进一步强调了Nup53p与Kap121p之间相互作用的生理相关性。有趣的是,Nup53p在有丝分裂期间会被特异性磷酸化。这种现象与核周相关的Kap121p的短暂减少相关。