首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Influence of specific HSP70 domains on fibril formation of the yeast prion protein Ure2
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Influence of specific HSP70 domains on fibril formation of the yeast prion protein Ure2

机译:特定HSP70结构域对酵母蛋白Ure2的原纤维形成的影响

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摘要

Ure2p is the protein determinant of the Saccharomyces cerevisiae prion state [URE3]. Constitutive overexpression of the HSP70 family member SSA1 cures cells of [URE3]. Here, we show that Ssa1p increases the lag time of Ure2p fibril formation in vitro in the presence or absence of nucleotide. The presence of the HSP40 co-chaperone Ydj1p has an additive effect on the inhibition of Ure2p fibril formation, whereas the Ydj1p H34Q mutant shows reduced inhibition alone and in combination with Ssa1p. In order to investigate the structural basis of these effects, we constructed and tested an Ssa1p mutant lacking the ATPase domain, as well as a series of C-terminal truncation mutants. The results indicate that Ssa1p can bind to Ure2p and delay fibril formation even in the absence of the ATPase domain, but interaction of Ure2p with the substrate-binding domain is strongly influenced by the C-terminal lid region. Dynamic light scattering, quartz crystal microbalance assays, pull-down assays and kinetic analysis indicate that Ssa1p interacts with both native Ure2p and fibril seeds, and reduces the rate of Ure2p fibril elongation in a concentration-dependent manner. These results provide new insights into the structural and mechanistic basis for inhibition of Ure2p fibril formation by Ssa1p and Ydj1p.
机译:Ure2p是酿酒酵母病毒状态的蛋白质决定因素[URE3]。 HSP70家族成员SSA1的组成型过表达可治愈[URE3]的细胞。在这里,我们表明Ssa1p在存在或不存在核苷酸的情况下增加了Ure2p原纤维形成的滞后时间。 HSP40伴侣蛋白Ydj1p的存在对Ure2p原纤维形成的抑制具有累加效应,而Ydj1p H34Q突变体单独或与Ssa1p结合时抑制作用降低。为了研究这些作用的结构基础,我们构建和测试了一个缺少ATPase结构域的Ssa1p突变体,以及一系列C端截短突变体。结果表明,即使在没有ATPase结构域的情况下,Ssa1p仍可以与Ure2p结合并延迟原纤维形成,但是Ure2p与底物结合域的相互作用受到C端盖区的强烈影响。动态光散射,石英晶体微量天平测定,下拉测定和动力学分析表明,Ssa1p与天然Ure2p和原纤维种子都相互作用,并以浓度依赖的方式降低了Ure2p原纤维伸长率。这些结果为Ssa1p和Ydj1p抑制Ure2p原纤维形成的结构和机理基础提供了新见解。

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