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Polymorphism at 129 dictates metastable conformations of the human prion protein N-terminal β-sheet

机译:129位点的多态性决定了人类病毒蛋白N端β-折叠的亚稳态构象

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We study the thermodynamic stability of the native state of the human prion protein using a new free-energy method, replica-exchange on-the-fly parameterization. This method is designed to overcome hidden-variable sampling limitations to yield nearly error-free free-energy profiles along a conformational coordinate. We confirm that all four (M129V, D178N) polymorphs have a ground-state conformation with three intact β-sheet hydrogen bonds. Additionally, they are observed to have distinct metastabilities determined by the side-chain at position 129. We rationalize these findings with reference to the prion “strain” hypothesis, which links the variety of transmissible spongiform encephalopathy phenotypes to conformationally distinct infectious prion forms and classifies distinct phenotypes of sporadic Creutzfeldt-Jakob disease based solely on the 129 polymorphism. Because such metastable structures are not easily observed in structural experiments, our approach could potentially provide new insights into the conformational origins of prion diseases and other pathologies arising from protein misfolding and aggregation.
机译:我们使用一种新的自由能方法,即副本交换实时参数化研究人类study病毒蛋白天然状态的热力学稳定性。此方法旨在克服隐变量采样限制,以沿构象坐标生成几乎没有错误的自由能概图。我们确认所有四个(M129V,D178N)多晶型物均具有基态构象,具有三个完整的β-折叠氢键。此外,观察到它们具有由位置129的侧链决定的独特的亚稳态。我们参考the病毒“菌株”假说对这些发现进行合理化,该假说将各种可传播的海绵状脑病表型与构型上不同的传染性病毒形式联系起来并进行分类。单独基于129多态性的散发性Creutzfeldt-Jakob病的独特表型。由于在结构实验中不容易观察到这种亚稳结构,因此我们的方法可能为provide病毒疾病的构象起源以及由蛋白质错误折叠和聚集引起的其他病理学提供新的见解。

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