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Crystal Structure of Rice Importin-α and Structural Basis of Its Interaction with Plant-Specific Nuclear Localization Signals

机译:水稻importin-α的晶体结构及其与植物特定核定位信号相互作用的结构基础

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摘要

In the classical nucleocytoplasmic import pathway, nuclear localization signals (NLSs) in cargo proteins are recognized by the import receptor importin-α. Importin-α has two separate NLS binding sites (the major and the minor site), both of which recognize positively charged amino acid clusters in NLSs. Little is known about the molecular basis of the unique features of the classical nuclear import pathway in plants. We determined the crystal structure of rice (Oryza sativa) importin-α1a at 2-Å resolution. The structure reveals that the autoinhibitory mechanism mediated by the importin-β binding domain of importin-α operates in plants, with NLS-mimicking sequences binding to both minor and major NLS binding sites. Consistent with yeast and mammalian proteins, rice importin-α binds the prototypical NLS from simian virus 40 large T-antigen preferentially at the major NLS binding site. We show that two NLSs, previously described as plant specific, bind to and are functional with plant, mammalian, and yeast importin-α proteins but interact with rice importin-α more strongly. The crystal structures of their complexes with rice importin-α show that they bind to the minor NLS binding site. By contrast, the crystal structures of their complexes with mouse (Mus musculus) importin-α show preferential binding to the major NLS binding site. Our results reveal the molecular basis of a number of features of the classical nuclear transport pathway specific to plants.
机译:在经典的核质导入途径中,导入受体importin-α识别货运蛋白中的核定位信号(NLSs)。 Importin-α具有两个单独的NLS结合位点(主要位点和次要位点),这两个位点均识别NLS中带正电荷的氨基酸簇。关于植物中经典核输入途径独特特征的分子基础知之甚少。我们以2Å分辨率确定了水稻(Oryza sativa)importin-α1a的晶体结构。该结构揭示了由importin-α的importin-β结合域介导的自抑制机制在植物中起作用,且NLS模拟序列与次要和主要NLS结合位点结合。与酵母和哺乳动物蛋白一致,大米importin-α优先在主要NLS结合位点结合猿猴病毒40大T抗原的原型NLS。我们显示两个以前描述为植物特异性的NLS与植物,哺乳动物和酵母importin-α蛋白结合并具有功能,但与水稻importin-α的相互作用更强。它们与水稻importin-α的复合物的晶体结构表明它们与次要的NLS结合位点结合。相比之下,它们与小鼠(小家鼠)importin-α的复合物的晶体结构显示优先结合主要的NLS结合位点。我们的研究结果揭示了植物特有的经典核转运途径许多特征的分子基础。

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