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The effects of Cu2+?on conformational changes of hPrP180-192 derived from the C-terminal region of prion protein

机译:Cu 2 + ?对pr病毒蛋白C端来源hPrP180-192构象变化的影响

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Prion diseases are neurodegenerative disorders that are caused by misfolding of the prion protein (PrP) from a normal cellular protein (PrP~(C)) to a protease-resistant isoform (PrP~(Sc)). This conversion is thought to relate to Cu~(2+) binding to histidine residues; however, the aggregation mechanism is not fully understood due to the physical properties of PrP, such as its solubility or aggregation in vitro. In the present study, we focused on the importance of the role of the C-terminal region of PrP in structural conversion and aggregation. The physical and physiological properties of the synthetic fragment peptide human-PrP180-192 (hPrP180-192) were evaluated by circular dichroism (CD) spectra, high performance liquid chromatography (HPLC), Affinix quartz-crystal microbalance (QNμ), and Thioflavin-T staining. The secondary structure of hPrP180-192 changed from a random coil to a β-sheet in Cu~(2+) free buffer. In addition, we observed molecular interactions in hPrP180-192, and aggregation with itself, which was inhibited by Cu~(2+). We concluded that the C-terminal region of PrP, including hPrP180-192, may play an important role for the conversion of PrP~(C) to PrP~(Sc). These results support the seed theory aggregation mechanism for PrP.
机译:on病毒是神经退行性疾病,是由于ion病毒蛋白(PrP)从正常细胞蛋白(PrP〜(C))错折叠为蛋白酶抗性同工型(PrP〜(Sc))引起的。该转化被认为与Cu〜(2+)与组氨酸残基的结合有关。然而,由于PrP的物理特性(例如其溶解性或体外聚集),尚未完全了解聚集机理。在本研究中,我们集中于PrP C末端区域在结构转化和聚集中的作用的重要性。通过圆二色性(CD)光谱,高效液相色谱(HPLC),Affinix石英晶体微量天平(QNμ)和硫黄素-评估了合成片段肽human-PrP180-192(hPrP180-192)的物理和生理特性。 T染色。 hPrP180-192的二级结构在无Cu〜(2+)缓冲液中从无规卷曲变为β-折叠。此外,我们观察到hPrP180-192中的分子相互作用以及其自身的聚集,这被Cu〜(2+)抑制。我们得出的结论是,PrP的C端区域,包括hPrP180-192,可能对PrP〜(C)到PrP〜(Sc)的转化起重要作用。这些结果支持PrP的种子理论聚集机制。

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