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Mammalian prion amyloid formation in bacteria

机译:细菌中pr病毒淀粉样蛋白的形成

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ABSTRACT Mammalian prion proteins (PrPs) that cause transmissible spongiform encephalopathies are misfolded conformations of the host cellular PrP. The misfolded form, the scrapie PrP (PrPSc), can aggregate into amyloid fibrils that progressively accumulate in the brain, evolving to a pathological phenotype. A particular characteristic of PrPSc is to be found as different strains, related to the diversity of conformational states it can adopt. Prion strains are responsible for the multiple phenotypes observed in prion diseases, presenting different incubation times and diverse deposition profiles in the brain. PrP biochemical properties are also strain-dependent, such as different digestion pattern after proteolysis and different stability. Although they have long been studied, strain formation is still a major unsolved issue in prion biology. The recreation of strain-specific conformational features is of fundamental importance to study this unique pathogenic phenomenon. In our recent paper, we described that murine PrP, when expressed in bacteria, forms amyloid inclusion bodies that possess different strain-like characteristics, depending on the PrP construct. Here, we present an extra-view of these data and propose that bacteria might become a successful model to generate preparative amounts of prion strain-specific assemblies for high-resolution structural analysis as well as for addressing the determinants of infectivity and transmissibility.
机译:摘要引起传染性海绵状脑病的哺乳动物病毒蛋白(PrPs)是宿主细胞PrP的错误折叠构象。错误折叠的形式,即瘙痒病PrP(PrPSc),可能会聚集成淀粉样原纤维,逐渐在大脑中积聚,演变成病理表型。 PrPSc的一个特殊特征是可以发现的不同菌株,这与其可以采用的构象状态的多样性有关。 on病毒株负责病毒疾病中观察到的多种表型,在大脑中呈现不同的潜伏时间和不同的沉积特征。 PrP的生化特性也取决于菌株,例如蛋白水解后的不同消化方式和不同的稳定性。尽管已经对它们进行了长期的研究,但是菌株的形成仍然是病毒生物学中尚未解决的主要问题。应变特异性构象特征的恢复对于研究这种独特的致病现象至关重要。在我们最近的论文中,我们描述了鼠PrP在细菌中表达时会形成淀粉样蛋白包涵体,这些蛋白具有不同的类似菌株的特性,具体取决于PrP的构建体。在这里,我们提出了这些数据的额外观点,并提出细菌可能成为成功制备成功制备model病毒菌株特异性装配的模型,用于高分辨率结构分析以及解决传染性和传播性的决定因素。

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