首页> 外文期刊>Eukaryotic cell >Hsp104 Overexpression Cures Saccharomyces cerevisiae [PSI+] by Causing Dissolution of the Prion Seeds
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Hsp104 Overexpression Cures Saccharomyces cerevisiae [PSI+] by Causing Dissolution of the Prion Seeds

机译:Hsp104过表达通过溶解Pri病毒种子治愈啤酒酵母[PSI +]。

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The [PSI+] yeast prion is formed when Sup35 misfolds into amyloid aggregates. [PSI+], like other yeast prions, is dependent on the molecular chaperone Hsp104, which severs the prion seeds so that they pass on as the yeast cells divide. Surprisingly, however, overexpression of Hsp104 also cures [PSI+]. Several models have been proposed to explain this effect: inhibition of severing, asymmetric segregation of the seeds between mother and daughter cells, and dissolution of the prion seeds. First, we found that neither the kinetics of curing nor the heterogeneity in the distribution of the green fluorescent protein (GFP)-labeled Sup35 foci in partially cured yeast cells is compatible with Hsp104 overexpression curing [PSI+] by inhibiting severing. Second, we ruled out the asymmetric segregation model by showing that the extent of curing was essentially the same in mother and daughter cells and that the fluorescent foci did not distribute asymmetrically, but rather, there was marked loss of foci in both mother and daughter cells. These results suggest that Hsp104 overexpression cures [PSI+] by dissolution of the prion seeds in a two-step process. First, trimming of the prion seeds by Hsp104 reduces their size, and second, their amyloid core is eliminated, most likely by proteolysis.
机译:当Sup35错误折叠成淀粉样蛋白聚集体时,会形成[ PSI + ]酵母病毒。 [ PSI + ]像其他酵母病毒一样,也依赖于分子伴侣Hsp104,后者裂解se病毒种子,以便它们在酵母细胞分裂时继续传播。但是,令人惊讶的是,Hsp104的过表达也可以治愈[ PSI + ]。已经提出了几种模型来解释这种作用:抑制切断,母细胞和子细胞之间种子的不对称分离以及病毒种子的溶解。首先,我们发现在部分固化的酵母细胞中,固化动力学或绿色荧光蛋白(GFP)标记的Sup35病灶分布的不均一性均与Hsp104过表达固化[ PSI + ]通过禁止切断。其次,我们通过证明母子细胞的固化程度基本相同,并且荧光灶并不对称地分布,而是在母子细胞中明显丢失了灶,从而排除了不对称分离模型。这些结果表明,Hsp104过表达通过两步分解dissolution病毒种子来治愈[ PSI + ]。首先,通过Hsp104修剪the病毒种子会减小它们的大小,其次,很可能是通过蛋白水解作用消除了它们的淀粉样蛋白核心。

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