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Prion-based memory of heat stress in yeast

机译:基于朊病毒的热应激记忆酵母

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Amyloids and amyloid-based prions are self-perpetuating protein aggregates which can spread by converting a normal protein of the same sequence into a prion form. They are associated with diseases in humans and mammals, and control heritable traits in yeast and other fungi. Some amyloids are implicated in biologically beneficial processes. As prion formation generates reproducible memory of a conformational change, prions can be considered as molecular memory devices. We have demonstrated that in yeast, stress-inducible cytoskeleton-associated protein Lsb2 forms a metastable prion in response to high temperature. This prion promotes conversion of other proteins into prions and can persist in a fraction of cells for a significant number of cell generations after stress, thus maintaining the memory of stress in a population of surviving cells. Acquisition of an amino acid substitution required for Lsb2 to form a prion coincides with acquisition of increased thermotolerance in the evolution of Saccharomyces yeast. Thus the ability to form an Lsb2 prion in response to stress coincides with yeast adaptation to growth at higher temperatures. These findings intimately connect prion formation to the cellular response to environmental stresses.
机译:淀粉样蛋白和基淀粉样蛋白基朊蛋白质是自我延伸的蛋白质聚集体,其可以通过将相同序列的正常蛋白转化为朊病毒形式来传播。它们与人和哺乳动物的疾病有关,并控制酵母和其他真菌的遗传性状。一些淀粉样蛋白在生物有益的过程中涉及。随着朊病毒形成产生构象变化的可再现存储器,可以认为朊病毒是分子内存装置。我们已经证明,在酵母中,应激诱导的细胞骨架相关蛋白LSB2响应于高温而形成亚稳态朊病毒。该朊病原促进其他蛋白质转化为朊病毒,并且可以在压力后的大量细胞代几代细胞中持续存在,从而保持存活细胞群中应力的记忆。获取LSB2所需的氨基酸取代以形成朊病毒,并在酵母酵母的演变中获取增加的热能。因此,响应应力形成LSB2朊病毒的能力与较高温度的酵母适应重合。这些发现将朊病毒形成紧密地连接到对环境压力的蜂窝响应。

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