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Comparison of the local structural stabilities of mammalian prion protein (PrP) by fragment molecular orbital calculations

机译:通过片段分子轨道计算比较哺乳动物蛋白(PrP)的局部结构稳定性

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Bovine spongiform encephalopathy (BSE ), a member of the prion diseases, is a fatal neurodegenerative disorder suspected to be caused by a malfunction of prion protein (PrP). Although BSE prions have been reported to be transmitted to a wide range of animal species, dogs and hamsters are known to be BSE -resistant animals. Analysis of canine and hamster PrP could elucidate the molecular mechanisms supporting the species barriers to BSE prion transmission. The structural stability of six mammalian PrPs, including human, cattle, mouse, hamster, dog and cat, was analyzed. We then evaluated intramolecular interactions in PrP by fragment molecular orbital (FMO) calculations. Despite similar backbone structures, the PrP side-chain orientations differed among the animal species examined. The pair interaction energies between secondary structural elements in the PrPs varied considerably, indicating that the local structural stabilities of PrP varied among the different animal species. Principal component analysis (PCA) demonstrated that different local structural stability exists in bovine PrP compared with the PrP of other animal species examined. The results of the present study suggest that differences in local structural stabilities between canine and bovine PrP link diversity in susceptibility to BSE prion infection.
机译:牛海绵状脑病(BSE)是病毒疾病的一种,是一种致命的神经退行性疾病,怀疑是由病毒蛋白(PrP)的功能异常引起的。尽管据报道疯牛病病毒可传播给多种动物,但已知狗和仓鼠是抗疯牛病的动物。犬和​​仓鼠PrP的分析可以阐明支持BSE ion病毒传播的物种障碍的分子机制。分析了六种哺乳动物PrP的结构稳定性,包括人,牛,小鼠,仓鼠,狗和猫。然后,我们通过片段分子轨道(FMO)计算来评估PrP中的分子内相互作用。尽管骨架结构相似,但所检查的动物物种之间的PrP侧链方向不同。 PrPs中二级结构元素之间的配对相互作用能发生很大变化,表明PrP的局部结构稳定性在不同动物物种之间有所不同。主成分分析(PCA)表明,与其他受检动物相比,牛PrP中存在不同的局部结构稳定性。本研究的结果表明,犬和牛的PrP之间的局部结构稳定性差异会导致BSE ion病毒感染的易感性差异。

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