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首页> 外文期刊>Protein Science: A Publication of the Protein Society >The protonation state of histidine 111 regulates the aggregation of the evolutionary most conserved region of the human prion protein
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The protonation state of histidine 111 regulates the aggregation of the evolutionary most conserved region of the human prion protein

机译:组氨酸111的质子化状态调节人病毒蛋白进化最保守区域的聚集

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摘要

In a group of neurodegenerative diseases, collectively termed transmissible spongiform encephalopathies, the prion protein aggregates into -sheet rich amyloid-like deposits. Because amyloid structure has been connected to different prion strains and cellular toxicity, it is important to obtain insight into the structural properties of prion fibrils. Using a combination of solution NMR spectroscopy, thioflavin-T fluorescence and electron microscopy we here show that within amyloid fibrils of a peptide containing residues 108-143 of the human prion protein [humPrP (108-143)]the evolutionary most conserved part of the prion protein - residue H111 and S135 are in close spatial proximity and their interaction is critical for fibrillization. We further show that residues H111 and H140 share the same microenvironment in the unfolded, monomeric state of the peptide, but not in the fibrillar form. While protonation of H140 has little influence on fibrillization of humPrP (108-143), a positive charge at position 111 blocks the conformational change, which is necessary for amyloid formation of humPrP (108-143). Our study thus highlights the importance of protonation of histidine residues for protein aggregation and suggests point mutations to probe the structure of infectious prion particles.
机译:在一组神经退行性疾病(统称为传染性海绵状脑病)中,the病毒蛋白聚集成富含薄片的淀粉样蛋白沉积物。由于淀粉样蛋白结构已经与不同的pr病毒菌株和细胞毒性相关,因此重要的是了解insight病毒原纤维的结构特性。我们结合使用溶液NMR光谱,硫代黄素T荧光和电子显微镜,发现在含有人病毒蛋白[humPrP(108-143)]残基108-143的肽的淀粉样原纤维内,其进化最保守。 ion病毒蛋白-残基H111和S135在空间上非常接近,它们的相互作用对于原纤维化至关重要。我们进一步显示,残基H111和H140在肽的未折叠单体状态中共享相同的微环境,但不在原纤维形式中。尽管H140的质子化对humPrP(108-143)的原纤维化几乎没有影响,但111位的正电荷会阻止构象变化,这对于humPrP(108-143)的淀粉样蛋白形成是必需的。因此,我们的研究突出了组氨酸残基的质子化对于蛋白质聚集的重要性,并提出了点突变来探测传染性病毒颗粒的结构。

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