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Fragment molecular orbital calculations reveal that the E200K mutation markedly alters local structural stability in the human prion protein

机译:片段分子轨道计算表明,E200K突变显着改变了人类病毒蛋白的局部结构稳定性

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The E200K mutation of the human prion protein (PrP) is known to cause familial Creutzfeldt–Jakob disease. In order to elucidate the effects of the mutation on the local structural stability of PrP, we performed ab initio fragment molecular orbital calculations for the wild-type human PrP and the E200K variant modeled under neutral and mild acidic conditions. The calculations revealed that this substitution markedly altered the intramolecular interactions in the PrP, suggesting that the local structural instabilities induced by the E200K mutation might cause initial denaturation of the PrP and its subsequent conversion to a pathogenic form. This work presents a new approach for quantitatively elucidating structural instabilities in proteins that cause misfolding diseases.
机译:已知人类病毒蛋白(PrP)的E200K突变会导致家族性Creutzfeldt–Jakob病。为了阐明突变对PrP的局部结构稳定性的影响,我们对在中性和温和酸性条件下建模的野生型人PrP和E200K变体进行了从头开始的分子轨道计算。计算结果表明,这种取代显着改变了PrP中的分子内相互作用,这表明由E200K突变引起的局部结构不稳定性可能导致PrP最初变性并随后转化为病原体。这项工作提出了一种新方法,用于定量阐明引起错误折叠疾病的蛋白质中的结构不稳定性。

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