Max-Planck-Institute of Biochemistry, Department of Structural Cell Biology, Am Klopferspitz 18, 82152 Martinsried, Germany.
Mol Cell. 2010 Jan 29;37(2):211-22. doi: 10.1016/j.molcel.2010.01.007.
Mago and Y14 are core components of the exon junction complex (EJC), an assembly central to nonsense-mediated mRNA decay in humans and mRNA localization in flies. The Mago-Y14 heterodimer shuttles between the nucleus, where it is loaded onto specific mRNAs, and the cytoplasm, where it functions in translational regulation. The heterodimer is imported back into the nucleus by Importin 13 (Imp13), a member of the karyopherin-beta family of transport factors. We have elucidated the structural basis of the Mago-Y14 nuclear import cycle. The 3.35 A structure of the Drosophila Imp13-Mago-Y14 complex shows that Imp13 forms a ring-like molecule, reminiscent of Crm1, and encircles the Mago-Y14 cargo with a conserved interaction surface. The 2.8 A structure of human Imp13 bound to RanGTP reveals how Mago-Y14 is released in the nucleus by a steric hindrance mechanism. Comparison of the two structures suggests how this unusual karyopherin might function in bidirectional nucleocytoplasmic transport.
Mago 和 Y14 是外显子连接复合物(EJC)的核心组成部分,该复合物是人类无义介导的 mRNA 降解和果蝇中 mRNA 定位的关键组装体。Mago-Y14 异二聚体在核内穿梭,在核内被加载到特定的 mRNA 上,在细胞质内发挥翻译调控作用。异二聚体通过 Importin 13(Imp13)被重新导入核内,Importin 13 是核孔转运因子家族的一员。我们已经阐明了 Mago-Y14 核输入循环的结构基础。果蝇 Imp13-Mago-Y14 复合物的 3.35 A 结构表明,Imp13 形成一个环状分子,类似于 Crm1,并以保守的相互作用表面环绕 Mago-Y14 货物。结合 RanGTP 的人 Imp13 的 2.8 A 结构揭示了 Mago-Y14 如何通过空间位阻机制在核内释放。两个结构的比较表明,这种不寻常的核孔转运蛋白如何在双向核质运输中发挥作用。