Blevins Melanie B, Smith Ashley M, Phillips Erica M, Powers Maureen A
Department of Cell Biology, Emory University School of Medicine, Atlanta, Georgia 30322, USA.
J Biol Chem. 2003 Jun 6;278(23):20979-88. doi: 10.1074/jbc.M302061200. Epub 2003 Mar 13.
Most nucleocytoplasmic traffic through the nuclear pore complex is mediated by soluble receptors of the importin/exportin or karyopherin family. mRNA export is unique in that no receptor of this family has been implicated in trafficking of the bulk of mRNAs. Instead, many diverse proteins have been linked to mRNA export, but an all-encompassing model remains elusive. Understanding how these proteins interact with each other is central to the development of such a model. Here, we have focused on the interactions between three proteins implicated in mRNA export, Nup98, Rae1/Gle2, and TAP. We have defined the binary complexes that form among these proteins. We find that Gle2 requires two sites within TAP for stable interaction. Strikingly, rather than a general affinity for all nucleoporin FG repeats, TAP has highest affinity for a specific region within the GLFG domain of Nup98, indicating that not all repeats are identical in function. We have established that the ternary complex can form through simultaneous binding of both Gle2 and TAP to adjacent sites on Nup98. In contrast, Nup98 competes with TAP for Gle2 binding; when bound to Nup98, Gle2 no longer interacts directly with TAP. From these interactions, we propose that Gle2 may act to deliver TAP to Nup98 and that this may represent the first in a series of interactions between an export complex and a nucleoporin.
大多数通过核孔复合体的核质运输是由输入蛋白/输出蛋白或核转运蛋白家族的可溶性受体介导的。mRNA输出具有独特性,因为该家族中没有受体参与大多数mRNA的运输。相反,许多不同的蛋白质与mRNA输出有关,但一个全面的模型仍然难以捉摸。了解这些蛋白质如何相互作用是建立这样一个模型的核心。在这里,我们专注于三种与mRNA输出有关的蛋白质Nup98、Rae1/Gle2和TAP之间的相互作用。我们已经确定了这些蛋白质之间形成的二元复合物。我们发现Gle2需要TAP内的两个位点才能进行稳定的相互作用。令人惊讶的是,TAP对所有核孔蛋白FG重复序列并没有普遍的亲和力,而是对Nup98的GLFG结构域内的一个特定区域具有最高的亲和力,这表明并非所有的重复序列在功能上都是相同的。我们已经确定三元复合物可以通过Gle2和TAP同时结合到Nup98上的相邻位点而形成。相反,Nup98与TAP竞争Gle2的结合;当与Nup98结合时,Gle2不再直接与TAP相互作用。基于这些相互作用,我们提出Gle2可能起到将TAP递送至Nup98的作用,这可能代表了输出复合物与核孔蛋白之间一系列相互作用中的第一步。