Division of Biological Science, Graduate School of Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8602, Japan.
J Mol Biol. 2013 Jan 23;425(2):350-64. doi: 10.1016/j.jmb.2012.11.014. Epub 2012 Nov 16.
CRM1 mediates nuclear export of numerous proteins and ribonucleoproteins containing a leucine-rich nuclear export signal (NES). Binding of RanGTP to CRM1 in the nucleus stabilizes cargo association with CRM1, and vice versa, but the mechanism underlying the positive cooperativity in RanGTP and NES binding to CRM1 remains incompletely understood. Herein we report a 2.1-Å-resolution crystal structure of unliganded Saccharomyces cerevisiae CRM1 (Xpo1p) that demonstrates that an internal loop of CRM1 (referred to as HEAT9 loop) is primarily responsible for maintaining the NES-binding cleft in a closed conformation, rendering CRM1 incapable of NES binding in the absence of RanGTP. The structure also shows that the C-terminal tail of CRM1 stabilizes the autoinhibitory conformation of the HEAT9 loop and thereby reinforces autoinhibition. Comparison with the structures of CRM1-NES-RanGTP complexes reveals how binding of RanGTP is associated with a series of allosteric conformational changes in CRM1 that lead to opening of the NES-binding cleft, allowing for stable binding of NES cargoes.
CRM1 介导含有富含亮氨酸的核输出信号 (NES) 的众多蛋白质和核糖核蛋白的核输出。RanGTP 与核内 CRM1 的结合稳定了货物与 CRM1 的结合,反之亦然,但 RanGTP 和 NES 与 CRM1 结合的正协同作用的机制仍不完全清楚。在此,我们报告了未配体结合的酿酒酵母 CRM1(Xpo1p)的 2.1 Å 分辨率晶体结构,该结构表明 CRM1 的内部环(称为 HEAT9 环)主要负责保持 NES 结合裂缝处于关闭构象,从而使 CRM1 在没有 RanGTP 的情况下无法结合 NES。该结构还表明,CRM1 的 C 末端尾巴稳定了 HEAT9 环的自动抑制构象,从而加强了自动抑制。与 CRM1-NES-RanGTP 复合物的结构比较揭示了 RanGTP 的结合如何与 CRM1 中的一系列变构构象变化相关联,这些变化导致 NES 结合裂缝的打开,从而允许 NES 货物的稳定结合。