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How Do We Study the Dynamic Structure of Unstructured Proteins: A Case Study on Nopp140 as an Example of a Large Intrinsically Disordered Protein

机译:我们如何研究非结构化蛋白质的动态结构:以Nopp140为例的大型内在无序蛋白质的实例研究

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摘要

Intrinsically disordered proteins (IDPs) represent approximately 30% of the human genome and play key roles in cell proliferation and cellular signaling by modulating the function of target proteins via protein–protein interactions. In addition, IDPs are involved in various human disorders, such as cancer, neurodegenerative diseases, and amyloidosis. To understand the underlying molecular mechanism of IDPs, it is important to study their structural features during their interactions with target proteins. However, conventional biochemical and biophysical methods for analyzing proteins, such as X-ray crystallography, have difficulty in characterizing the features of IDPs because they lack an ordered three-dimensional structure. Here, we present biochemical and biophysical studies on nucleolar phosphoprotein 140 (Nopp140), which mostly consists of disordered regions, during its interaction with casein kinase 2 (CK2), which plays a central role in cell growth. Surface plasmon resonance and electron paramagnetic resonance studies were performed to characterize the interaction between Nopp140 and CK2. A single-molecule fluorescence resonance energy transfer study revealed conformational change in Nopp140 during its interaction with CK2. These studies on Nopp140 can provide a good model system for understanding the molecular function of IDPs.
机译:内在无序蛋白(IDP)约占人类基因组的30%,并通过蛋白与蛋白之间的相互作用调节靶蛋白的功能,从而在细胞增殖和细胞信号传导中发挥关键作用。另外,IDP涉及各种人类疾病,例如癌症,神经退行性疾病和淀粉样变性病。要了解IDP的潜在分子机制,重要的是研究IDP与靶蛋白相互作用期间的结构特征。但是,用于分析蛋白质的常规生化和生物物理方法(例如X射线晶体学)由于缺乏有序的三维结构而难以表征IDP的特征。在这里,我们介绍了对核仁磷蛋白140(Nopp140)的生化和生物物理研究,该蛋白主要由无序区组成,与酪蛋白激酶2(CK2)相互作用,在细胞生长中起着核心作用。进行了表面等离子体激元共振和电子顺磁共振研究,以表征Nopp140和CK2之间的相互作用。单分子荧光共振能量转移研究显示Nopp140与CK2相互作用期间的构象变化。这些对Nopp140的研究可以为理解IDP的分子功能提供一个良好的模型系统。

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