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Biophysical characterization of the structural change of Nopp140 an intrinsically disordered protein in the interaction with CK2α

机译:内在无序蛋白Nopp140与CK2α相互作用的结构变化的生物物理表征

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摘要

Nucleolar phosphoprotein 140 (Nopp140) is a nucleolar protein, more than 80% of which is disordered. Previous studies have shown that the C-terminal region of Nopp140 (residues 568–596) interacts with protein kinase CK2α, and inhibits the catalytic activity of CK2. Although the region of Nopp140 responsible for the interaction with CK2α was identified, the structural features and the effect of this interaction on the structure of Nopp140 have not been defined due to the difficulty of structural characterization of disordered protein. In this study, the disordered feature of Nopp140 and the effect of CK2α on the structure of Nopp140 were examined using single-molecule fluorescence resonance energy transfer (smFRET) and electron paramagnetic resonance (EPR). The interaction with CK2α was increased conformational rigidity of the CK2α-interacting region of Nopp140 (Nopp140C), suggesting that the disordered and flexible conformation of Nopp140C became more rigid conformation as it binds to CK2α. In addition, site specific spin labeling and EPR analysis confirmed that the residues 574–589 of Nopp140 are critical for binding to CK2α. Similar technical approaches can be applied to analyze the conformational changes in other IDPs during their interactions with binding partners.
机译:核仁磷蛋白140(Nopp140)是一种核仁蛋白,其中80%以上是无序的。先前的研究表明,Nopp140的C末端区域(残基568–596)与蛋白激酶CK2α相互作用,并抑制CK2的催化活性。尽管已经鉴定出负责与CK2α相互作用的Nopp140区域,但是由于难于对无序蛋白进行结构表征,因此尚未确定其结构特征和该相互作用对Nopp140结构的影响。在这项研究中,使用单分子荧光共振能量转移(smFRET)和电子顺磁共振(EPR)研究了Nopp140的无序特征和CK2α对Nopp140结构的影响。与CK2α的相互作用增加了Nopp140(Nopp140C)的CK2α相互作用区域的构象刚度,这表明Nopp140C与CK2α结合时,其无序而灵活的构象变得更加刚性。此外,位点特异性自旋标记和EPR分析证实Nopp140的574-589位残基对于与CK2α结合至关重要。可以使用类似的技术方法来分析其他IDP与绑定伙伴交互过程中的构象变化。

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