Department of Cellular Logistics, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, 37077 Göttingen, Germany.
Nat Commun. 2016 Jun 16;7:11952. doi: 10.1038/ncomms11952.
Xpo4 is a bidirectional nuclear transport receptor that mediates nuclear export of eIF5A and Smad3 as well as import of Sox2 and SRY. How Xpo4 recognizes such a variety of cargoes is as yet unknown. Here we present the crystal structure of the RanGTP·Xpo4·eIF5A export complex at 3.2 Å resolution. Xpo4 has a similar structure as CRM1, but the NES-binding site is occluded, and a new interaction site evolved that recognizes both globular domains of eIF5A. eIF5A contains hypusine, a unique amino acid with two positive charges, which is essential for cell viability and eIF5A function in translation. The hypusine docks into a deep, acidic pocket of Xpo4 and is thus a critical element of eIF5A's complex export signature. This further suggests that Xpo4 recognizes other cargoes differently, and illustrates how Xpo4 suppresses - in a chaperone-like manner - undesired interactions of eIF5A inside nuclei.
Xpo4 是一种双向核转运受体,可介导 eIF5A 和 Smad3 的核输出以及 Sox2 和 SRY 的核输入。Xpo4 如何识别如此多种类的货物目前尚不清楚。在这里,我们展示了 RanGTP·Xpo4·eIF5A 出口复合物在 3.2 Å 分辨率下的晶体结构。Xpo4 的结构与 CRM1 相似,但 NES 结合位点被阻断,并且进化出了一个新的相互作用位点,可识别 eIF5A 的两个球状结构域。eIF5A 含有假尿嘧啶,这是一种带有两个正电荷的独特氨基酸,对细胞活力和 eIF5A 在翻译中的功能至关重要。假尿嘧啶与 Xpo4 的深酸性口袋对接,因此是 eIF5A 复杂出口特征的关键要素。这进一步表明,Xpo4 以不同的方式识别其他货物,并说明了 Xpo4 如何以类似于伴侣蛋白的方式抑制 eIF5A 在核内的不必要相互作用。