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Mechanisms of priori protein assembly into amyloid

机译:先天蛋白组装成淀粉样蛋白的机制

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The conversion of the α-helical, cellular isoform of the prion protein (PrP~C) to the insoluble, β-sheet-rich, infectious, disease-causing isoform (PrP~(Sc)) is the key event in prion diseases. In an earlier study, several forms of PrP were converted into a fibrillar state by using an in vitro conversion system consisting of low concentrations of SDS and 250 mM NaCl. Here, we characterize the structure of the fibril precursor state, that is, the soluble state under fibrillization conditions. CD spectroscopy, analytical ultra-centrif ugation, and chemical cross-linking indicate that the precursor state exists in a monomer-dimer equilibrium of partially denatured, α-helical PrP, with a well defined contact site of the subunits in the dimer. Using fluorescence with thioflavin T, we monitored and quantitatively described the kinetics of seeded fibril formation, including dependence of the reaction on substrate and seed concentrations. Exponential, seed-enhanced growth can be achieved in homogeneous solution, which can be enhanced by sonication. From these data, we propose a mechanistic model of fibrillization, including the presence of several intermediate structures. These studies also provide a simplified amplification system for prions.
机译:pr病毒蛋白的α-螺旋细胞亚型(PrP〜C)向不溶,富含β-折叠的,传染性,致病性亚型(PrP〜(Sc))的转化是病毒疾病的关键事件。在较早的研究中,通过使用由低浓度SDS和250 mM NaCl组成的体外转化系统,将多种形式的PrP转化为原纤维状态。在这里,我们表征原纤维前体状态的结构,即原纤维化条件下的可溶状态。 CD光谱,分析超速离心和化学交联表明,前体状态存在于部分变性的α-螺旋PrP的单体-二聚体平衡中,在二聚体中具有明确定义的亚基接触部位。使用硫代黄素T荧光,我们监测并定量描述了种子原纤维形成的动力学,包括反应对底物和种子浓度的依赖性。可以在均质溶液中实现指数级的种子增强生长,可通过超声处理增强其生长。从这些数据,我们提出了一种原纤维化的机械模型,包括几种中间结构的存在。这些研究还为病毒提供了简化的扩增系统。

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