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Hsp110 Chaperones Regulate Prion Formation and Propagation in S. cerevisiae by Two Discrete Activities

机译:Hsp110伴侣分子通过两个离散活动调节酿酒酵母中Pri病毒的形成和繁殖

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摘要

The cytosolic chaperone network of Saccharomyces cerevisiae is intimately associated with the emergence and maintenance of prion traits. Recently, the Hsp110 protein, Sse1, has been identified as a nucleotide exchange factor (NEF) for both cytosolic Hsp70 chaperone family members, Ssa1 and Ssb1. We have investigated the role of Sse1 in the de novo formation and propagation of [PSI+], the prion form of the translation termination factor, Sup35. As observed by others, we find that Sse1 is essential for efficient prion propagation. Our results suggest that the NEF activity is required for maintaining sufficient levels of substrate-free Ssa1. However, Sse1 exhibits an additional NEF-independent activity; it stimulates in vitro nucleation of Sup35NM, the prion domain of Sup35. We also observe that high levels of Sse1, but not of an unrelated NEF, very potently inhibit Hsp104-mediated curing of [PSI+]. Taken together, these results suggest a chaperone-like activity of Sse1 that assists in stabilization of early folding intermediates of the Sup35 prion conformation. This activity is not essential for prion formation under conditions of Sup35 overproduction, however, it may be relevant for spontaneous [PSI+] formation as well as for protection of the prion trait upon physiological Hsp104 induction.
机译:酿酒酵母的胞质伴侣网络与of病毒性状的出现和维持密切相关。最近,Hsp110蛋白Sse1已被确定为胞质Hsp70伴侣家族成员Ssa1和Ssb1的核苷酸交换因子(NEF)。我们研究了Sse1在[PSI +]从头形成和传播中的作用,PSI +是翻译终止因子Sup35的ion病毒形式。正如其他人所观察到的,我们发现Sse1对于有效的病毒传播至关重要。我们的结果表明,NEF活性是维持足够水平的无底物Ssa1所必需的。但是,Sse1表现出额外的独立于NEF的活性。它刺激Sup35NM的病毒结构域Sup35NM的体外成核。我们还观察到高水平的Sse1,而不是无关的NEF,却非常有效地抑制了Hsp104介导的[PSI +]的固化。综上所述,这些结果表明Sse1的伴侣样活性,有助于稳定Sup35 pr病毒构象的早期折叠中间体。在Sup35过量生产的条件下,此活性对于病毒的形成不是必需的,但是,它可能与自发[PSI +]的形成以及生理Hsp104诱导后保护病毒性状有关。

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