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Strain-specific morphologies of yeast prion amyloid fibrils

机译:酵母pr病毒淀粉样蛋白原纤维的菌株特异性形态

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Mass per length (mpl) measurements on single amyloid fibrils that specifically propagate the [VH], [VK], and [VL] strains of the yeast prion [PSI] reveal unanticipated differences in their structures. Many fibrils have ≈1.0 prion molecule per 4.7-A cross-β repeat period, which is consistent with a self-replicating model built by parallel β-sheet hydrogen-bonding of like prion peptide segments, but other fibrils are definitely heavier. The predominantly straight fibrils of the dominant [VH] strain have a bimodal mpl distribution, corresponding to components with ≈1.0 and 1.2 prions per repeat. Fibrils of the weaker [VK] strain, which are almost all wavy, have a monodisperse mpl distribution with a mean of 1.15 prions per repeat. The recessive [VL] strain sample has ≈1.05 prions per repeat in single fibrils and includes ≈10% double fibrils, which are rare in the duplicate [VH] and [VK] samples. All of these samples were assembled from purified recombinant Sup35 prion protein by seeded growth on nuclei extracted from yeast bearing the three [PSI] strains. Infectious and noninfectious spontaneously assembled fibrils of the recombinant prion protein also display different heterogeneous morphologies. The strain-specific morphological differences we have observed directly confirm the structural prediction of the protein-only prion theory but do not have an obvious molecular explanation.
机译:在单个淀粉样蛋白原纤维上的质量每长度质量(mpl)的测量可以特异性传播酵母pr病毒[PSI]的[VH],[VK]和[VL]菌株,从而揭示了它们结构上的意外差异。每4.7-A跨β重复周期,许多原纤维具有≈1.0pr病毒分子,这与通过类似like病毒肽段的平行β-折叠氢键建立的自我复制模型相一致,但其他原纤维肯定较重。显性[VH]株的主要直原纤维具有双峰mpl分布,对应于每个重复序列含≈1.0和1.2的组分。较弱的[VK]菌株的原纤维几乎全部呈波浪形,具有单分散的mpl分布,每个重复平均为1.15 pr。隐性[VL]应变样品在单原纤维中每个重复具有≈1.05ions,包括≈10%的双原纤维,在重复的[VH]和[VK]样品中很少见。所有这些样品都是通过纯化生长的重组Sup35 ion病毒蛋白通过接种在从带有3个[PSI]菌株的酵母中提取的核上进行接种而组装的。重组病毒蛋白的感染性和非感染性自发组装原纤维也表现出不同的异质形态。我们观察到的菌株特异性形态差异直接证实了仅蛋白质病毒理论的结构预测,但没有明显的分子解释。

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