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首页> 外文期刊>PLoS Pathogens >Quaternary Structure of Pathological Prion Protein as a Determining Factor of Strain-Specific Prion Replication Dynamics
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Quaternary Structure of Pathological Prion Protein as a Determining Factor of Strain-Specific Prion Replication Dynamics

机译:病理Pri蛋白的四级结构作为特定菌株Pri复制动力学的决定因素。

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Prions are proteinaceous infectious agents responsible for fatal neurodegenerative diseases in animals and humans. They are essentially composed of PrPSc, an aggregated, misfolded conformer of the ubiquitously expressed host-encoded prion protein (PrPC). Stable variations in PrPSc conformation are assumed to encode the phenotypically tangible prion strains diversity. However the direct contribution of PrPSc quaternary structure to the strain biological information remains mostly unknown. Applying a sedimentation velocity fractionation technique to a panel of ovine prion strains, classified as fast and slow according to their incubation time in ovine PrP transgenic mice, has previously led to the observation that the relationship between prion infectivity and PrPSc quaternary structure was not univocal. For the fast strains specifically, infectivity sedimented slowly and segregated from the bulk of proteinase-K resistant PrPSc. To carefully separate the respective contributions of size and density to this hydrodynamic behavior, we performed sedimentation at the equilibrium and varied the solubilization conditions. The density profile of prion infectivity and proteinase-K resistant PrPSc tended to overlap whatever the strain, fast or slow, leaving only size as the main responsible factor for the specific velocity properties of the fast strain most infectious component. We further show that this velocity-isolable population of discrete assemblies perfectly resists limited proteolysis and that its templating activity, as assessed by protein misfolding cyclic amplification outcompetes by several orders of magnitude that of the bulk of larger size PrPSc aggregates. Together, the tight correlation between small size, conversion efficiency and duration of disease establishes PrPSc quaternary structure as a determining factor of prion replication dynamics. For certain strains, a subset of PrP assemblies appears to be the best template for prion replication. This has important implications for fundamental studies on prions.
机译:ions病毒是导致动物和人类致命性神经退行性疾病的蛋白质类传染病。它们基本上由PrPSc组成,PrPSc是无处不在表达的宿主编码病毒蛋白(PrPC)的聚集,错误折叠的构象体。假定PrPSc构象的稳定变异可编码表型上有形的strain病毒菌株多样性。然而,PrPSc四元结构对菌株生物学信息的直接贡献仍然未知。将沉降速度分级技术应用于根据在绵羊PrP转基因小鼠中的潜伏时间分为快和慢的一组绵羊病毒菌株,先前已导致观察到病毒感染性与PrPSc第四级结构之间的关系并不明确。具体而言,对于快速菌株,传染性缓慢沉降,并与大部分耐蛋白酶K的PrPSc隔离。为了仔细区分大小和密度对此流体动力学行为的各自贡献,我们在平衡状态下进行了沉降并改变了增溶条件。 ion病毒感染性和耐蛋白酶K的PrPSc的密度分布倾向于重叠,无论菌株是快还是慢,仅大小是快速菌株最易感染组分比速特性的主要负责因素。我们进一步表明,这种速度可隔离的离散组件群体完全能够抵抗有限的蛋白水解作用,并且其模板化活性(通过蛋白质错误折叠环状扩增评估的结果)比大尺寸PrPSc聚集体的竞争性好几个数量级。总之,小尺寸,转化效率和疾病持续时间之间的紧密相关性将PrPSc的四级结构确立为病毒复制动力学的决定因素。对于某些菌株,PrP装配子集似乎是be病毒复制的最佳模板。这对病毒的基础研究具有重要意义。

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