Departments of Biochemistry and Cell Biology at Darthmouth, Hanover, New Hampshire, United States of America.
Department of Veterinary Public Health and Food Safety, Istituto Superiore di Sanità, Rome, Italy.
PLoS Pathog. 2019 Mar 25;15(3):e1007662. doi: 10.1371/journal.ppat.1007662. eCollection 2019 Mar.
The protein-only hypothesis predicts that infectious mammalian prions are composed solely of PrPSc, a misfolded conformer of the normal prion protein, PrPC. However, protein-only PrPSc preparations lack significant levels of prion infectivity, leading to the alternative hypothesis that cofactor molecules are required to form infectious prions. Here, we show that prions with parental strain properties and full specific infectivity can be restored from protein-only PrPSc in vitro. The restoration reaction is rapid, potent, and requires bank vole PrPC substrate, post-translational modifications, and cofactor molecules. To our knowledge, this represents the first report in which the essential properties of an infectious mammalian prion have been restored from pure PrP without adaptation. These findings provide evidence for a unified hypothesis of prion infectivity in which the global structure of protein-only PrPSc accurately stores latent infectious and strain information, but cofactor molecules control a reversible switch that unmasks biological infectivity.
蛋白质唯一假说预测传染性哺乳动物朊病毒仅由 PrPSc 组成,PrPSc 是正常朊病毒蛋白 PrPC 的错误折叠构象。然而,蛋白质唯一的 PrPSc 制剂缺乏显著水平的朊病毒感染性,导致了替代假说,即辅助因子分子是形成感染性朊病毒所必需的。在这里,我们表明可以从体外的蛋白质唯一 PrPSc 中恢复具有亲本株特性和完全特定感染性的朊病毒。恢复反应迅速、有效,需要 bank vole PrPC 底物、翻译后修饰和辅助因子分子。据我们所知,这代表了第一个从没有适应性的纯 PrP 中恢复传染性哺乳动物朊病毒的基本特性的报告。这些发现为朊病毒感染性的统一假说提供了证据,其中蛋白质唯一 PrPSc 的整体结构准确地存储潜在的感染性和株信息,但辅助因子分子控制着揭示生物感染性的可逆开关。