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微管相关蛋白 TPX2(爪蟾类驱动蛋白样蛋白 2 的靶向蛋白)与 importin-α 的新型结合。

Novel binding of the mitotic regulator TPX2 (target protein for Xenopus kinesin-like protein 2) to importin-alpha.

机构信息

Medical Research Council Laboratory of Molecular Biology, Cambridge CB2 0QH, United Kingdom.

出版信息

J Biol Chem. 2010 Jun 4;285(23):17628-35. doi: 10.1074/jbc.M110.102343. Epub 2010 Mar 23.

Abstract

Several aspects of mitotic spindle assembly are orchestrated by the Ran GTPase through its modulation of the interaction between spindle assembly factors and importin-alpha. One such factor is TPX2 that promotes microtubule assembly in the vicinity of chromosomes. TPX2 is inhibited when bound to importin-alpha, which occurs when the latter is bound to importin-beta. The importin-alpha:beta 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-alpha and so is inhibited. Here we use a combination of structural and biochemical methods to define the basis for TPX2 binding to importin-alpha. A 2.2 A resolution crystal structure shows that the primary nuclear localization signal ((284)KRKH(287)) of TPX2, which has been shown to be crucial for inhibition, binds to the minor NLS-binding site on importin-alpha. This atypical interaction pattern was confirmed using complementary binding studies that employed importin-alpha 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-alpha could account for much of the selectivity necessary during mitosis because this would reduce the competition for binding to importin-alpha from other NLS-containing proteins.

摘要

有几个方面的有丝分裂纺锤体组装是通过 Ran GTPase 协调的,它通过调节纺锤体组装因子和 importin-alpha 之间的相互作用。TPX2 就是这样一个促进微管在染色体附近组装的因子。当 TPX2 与 importin-alpha 结合时,它会被抑制,而 importin-alpha 与 importin-beta 结合时就会发生这种情况。importin-alpha:beta 相互作用被染色体附近的高 RanGTP 浓度破坏,从而释放出 TPX2。在更远的区域,Ran 主要与 GDP 结合,TPX2 仍然与 importin-alpha 结合,因此被抑制。在这里,我们使用结构和生化方法的组合来定义 TPX2 与 importin-alpha 结合的基础。一个 2.2 A 分辨率的晶体结构表明,TPX2 的主要核定位信号((284)KRKH(287)),已经被证明对抑制至关重要,它与 importin-alpha 的次要 NLS 结合位点结合。使用互补的结合研究证实了这种非典型的相互作用模式,该研究使用了结合主要或次要 NLS 结合位点的 importin-alpha 变体,以及使用主要与主要位点结合的 SV40 单部分 NLS 的竞争测定。TPX2 与 importin-alpha 结合的不同方式可以解释在有丝分裂过程中所需的大部分选择性,因为这将减少来自其他含有 NLS 蛋白的竞争结合 importin-alpha。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35cf/2878527/570173eafd67/zbc0251017670001.jpg

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