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Novel Binding of the Mitotic Regulator TPX2 (Target Protein for Xenopus Kinesin-like Protein 2) to Importin-α

机译:有丝分裂调节剂TPX2(非洲爪蟾驱动蛋白样蛋白2的靶蛋白)与Importin-α的新型结合。

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摘要

Several aspects of mitotic spindle assembly are orchestrated by the Ran GTPase through its modulation of the interaction between spindle assembly factors and importin-α. One such factor is TPX2 that promotes microtubule assembly in the vicinity of chromosomes. TPX2 is inhibited when bound to importin-α, which occurs when the latter is bound to importin-β. The importin-α:β interaction is disrupted by the high RanGTP concentration near the chromosomes, releasing TPX2. In more distal regions, where Ran is predominantly GDP-bound, TPX2 remains bound to importin-α and so is inhibited. Here we use a combination of structural and biochemical methods to define the basis for TPX2 binding to importin-α. A 2.2 Å resolution crystal structure shows that the primary nuclear localization signal (284KRKH287) of TPX2, which has been shown to be crucial for inhibition, binds to the minor NLS-binding site on importin-α. This atypical interaction pattern was confirmed using complementary binding studies that employed importin-α variants in which binding to either the major or minor NLS-binding site was impaired, together with competition assays using the SV40 monopartite NLS that binds primarily to the major site. The different way in which TPX2 binds to importin-α could account for much of the selectivity necessary during mitosis because this would reduce the competition for binding to importin-α from other NLS-containing proteins.
机译:Ran GTPase通过调节纺锤体装配因子和importin-α之间的相互作用来协调有丝分裂纺锤体装配的几个方面。一种这样的因子是TPX2,其促进染色体附近的微管组装。 TPX2与importin-α结合时受到抑制,而后者在与importin-β结合时发生。接近染色体的高RanGTP浓度破坏了importin-α:β的相互作用,释放了TPX2。在Ran主要受GDP约束的更远端区域中,TPX2仍然与importin-α结合,因此受到抑制。在这里,我们结合使用结构和生化方法来定义TPX2与importin-α结合的基础。 2.2Å分辨率的晶体结构表明,TPX2的主要核定位信号( 284 KRKH 287 )已与次要NLS结合,该信号对抑制至关重要。 importin-α上的结合位点。这种非典型的相互作用模式通过互补结合研究得到证实,该研究采用了重要的或次要的NLS结合位点的结合受损的importin-α变体,以及使用主要结合主要位点的SV40单部分NLS进行的竞争分析。 TPX2与importin-α结合的不同方式可解释有丝分裂过程中必需的许多选择性,因为这会减少与其他含有NLS的蛋白质与importin-α结合的竞争。

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