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核质中核定位信号与核转运蛋白α快速解离的分子基础。

Molecular basis for the rapid dissociation of nuclear localization signals from karyopherin alpha in the nucleoplasm.

作者信息

Gilchrist Daniel, Rexach Michael

机构信息

Department of Biological Sciences, Stanford University, Stanford, California 94305-5020, USA.

出版信息

J Biol Chem. 2003 Dec 19;278(51):51937-49. doi: 10.1074/jbc.M307371200. Epub 2003 Sep 26.

Abstract

The yeast karyopherin heterodimer Kap60p.Kap95p facilitates nuclear import of proteins bearing a classic nuclear localization signal (NLS). The alpha subunit Kap60p binds to the NLS of cargo molecules in the cytoplasm, forming stable complexes that must ultimately dissociate in the nucleoplasm. Although Kap60p can release NLSs on its own using an autoinhibitory sequence (AIS) motif that can occupy the NLS binding site, that mechanism is too slow to support rapid nuclear import. We previously showed that the nuclear basket nucleoporin Nup2p and the exportin complex Cse1p.Gsp1p.GTP function as karyopherin release factors (KaRFs) because they can accelerate the rate of dissociation of NLSs from Kap60p. Here we dissect the molecular mechanics of their KaRF activity. We show that Cse1p accelerates dissociation of Kap60p.NLS-cargo complexes and Kap60p.Nup2p complexes by increasing the affinity of Kap60p for its AIS motif. In contrast, Nup2p uses a conserved sequence motif (VMXXRKIA) coupled to an AIS-like motif to accelerate dissociation of Kap60p.NLS complexes in a vectorial reaction mechanism. Mutation of either motif in Nup2p leads to a loss of KaRF activity and to the accumulation of Kap60p.NLS-cargo complexes in the nucleoplasm of yeast. We discuss a model whereby Nup2p, Cse1p, and Gsp1p cooperate to establish directionality in the movement of Kap60p and NLS-cargos across the nuclear pore complex.

摘要

酵母核转运蛋白异二聚体Kap60p.Kap95p促进带有经典核定位信号(NLS)的蛋白质的核输入。α亚基Kap60p在细胞质中与货物分子的NLS结合,形成稳定的复合物,这些复合物最终必须在核质中解离。虽然Kap60p可以利用自身的自抑制序列(AIS)基序释放NLS,该基序可占据NLS结合位点,但该机制太慢,无法支持快速的核输入。我们之前表明,核篮核孔蛋白Nup2p和输出蛋白复合物Cse1p.Gsp1p.GTP作为核转运蛋白释放因子(KaRFs)发挥作用,因为它们可以加速NLS从Kap60p上解离的速率。在这里,我们剖析了它们的KaRF活性的分子机制。我们表明,Cse1p通过增加Kap60p对其AIS基序的亲和力来加速Kap60p.NLS-货物复合物和Kap60p.Nup2p复合物的解离。相比之下,Nup2p使用一个保守的序列基序(VMXXRKIA)与一个类似AIS的基序相结合,以在一个矢量反应机制中加速Kap60p.NLS复合物的解离。Nup2p中任何一个基序的突变都会导致KaRF活性丧失,并导致Kap60p.NLS-货物复合物在酵母核质中积累。我们讨论了一个模型,即Nup2p、Cse1p和Gsp1p协同作用,在Kap60p和NLS-货物穿过核孔复合物的运动中建立方向性。

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