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首页> 外文期刊>The Journal of biological chemistry >Analysis of the [RNQ+] Prion Reveals Stability of Amyloid Fibers as the Key Determinant of Yeast Prion Variant Propagation
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Analysis of the [RNQ+] Prion Reveals Stability of Amyloid Fibers as the Key Determinant of Yeast Prion Variant Propagation

机译:[RNQ +]朊病毒分析显示淀粉样纤维的稳定性作为酵母朊病毒变异繁殖的关键决定因素

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摘要

Variation in pathology of human prion disease is believed to be caused, in part, by distinct conformations of aggregated protein resulting in different prion strains. Several prions also exist in yeast and maintain different self-propagating structures, referred to as prion variants. Investigation of the yeast prion [PSI+] has been instrumental in deciphering properties of prion variants and modeling the physical basis of their formation. Here, we describe the generation of specific variants of the [RNQ+] prion in yeast transformed with fibers formed in vitro in different conditions. The fibers of the Rnq1p prion-forming domain (PFD) that induce different variants in vivo have distinct biochemical properties. The physical basis of propagation of prion variants has been previously correlated to rates of aggregation and disaggregation. With [RNQ+] prion variants, we found that the prion variant does not correlate with the rate of aggregation as anticipated but does correlate with stability. Interestingly, we found that there are differences in the ability of the [RNQ+] prion variants to faithfully propagate themselves and to template the aggregation of other proteins. Incorporating the mechanism of variant formation elucidated in this study with that previously proposed for [PSI+] variants has provided a framework to separate general characteristics of prion variant properties from those specific to individual prion proteins.
机译:据信,人朊病毒疾病病理学的变异部分地部分地引起聚集蛋白质导致不同朊病毒菌株的不同构象。酵母中也存在几个朊病毒并保持不同的自我繁殖结构,称为朊病毒变体。酵母朊病毒术[PSI +]的调查一直有助于解密朊病毒变体的性质,并对其形成的物理基础进行建模。在这里,我们描述了在不同条件下在体外形成的纤维转化的酵母中[RNQ +]朊病毒的比变体的产生。诱导体内不同变体的RNQ1P朊病毒形成结构域(PFD)的纤维具有不同的生化特性。朊病毒变体繁殖的物理基础先前与聚集和分解的速率相关。利用[RNQ +]朊病毒变体,我们发现朊病毒变体与预期的聚集速率不相关但与稳定性相关。有趣的是,我们发现[RNQ +]朊病毒变体忠实地繁殖的能力存在差异,并模板其他蛋白质的聚集。掺入本研究中阐明的变体形成机制,先前提出的用于λ变体已经提供了一种框架,以将朊病毒变异性质的一般特征与单个朊病毒蛋白的那些分离。

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