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Checking the pH-Induced Conformational Transition of Prion Protein by Molecular Dynamics Simulations: Effect of Protonation of Histidine Residues

机译:通过分子动力学模拟检查pH诱导的Prion蛋白的构象转变:组氨酸残基的质子化作用

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摘要

The role of acidic pH in the conversion of human prion protein to the pathogenic isoform is investigated by means of molecular dynamics simulations, focusing the attention on the effect of protonation of histidine residues on the conformational behavior of human PrPC globular domain. Our simulations reveal a significant loss of α-helix content under mildly acidic conditions, due to destructuration of the C-terminal part of HB (thus suggesting a possible involvement of HB into the conformational transition leading to the pathogenic isoform) and a transient lengthening of the native β-sheet. Protonation of His-187 and His-155 seems to be crucial for the onset of the conformational rearrangement. This finding can be related to the existence of a pathogenic mutation, H187R, which is associated with GSS syndrome. Finally, the relevance of our results for the location of a Cu2+-binding pocket in the C-terminal part of the prion is discussed.
机译:通过分子动力学模拟研究了酸性pH在人病毒蛋白向致病同工型转化中的作用,重点关注组氨酸残基的质子化对人PrPC球状结构域构象行为的影响。我们的模拟结果表明,在中等酸性条件下,由于HB的C末端部分解构,α-螺旋含量显着降低(这表明HB可能参与构象转变,导致致病的同工型),并且暂时延长了天然的β-折叠。 His-187和His-155的质子化对于构象重排的开始似乎至关重要。这一发现可能与致病性突变H187R的存在有关,该突变与GSS综合征相关。最后,讨论了我们的结果与the病毒C末端部分中Cu2 +结合袋位置的相关性。

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