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热休克蛋白40(Hsp40)直接与酵母朊病毒蛋白Ure2的天然状态相互作用,并抑制淀粉样纤维的形成。

Hsp40 interacts directly with the native state of the yeast prion protein Ure2 and inhibits formation of amyloid-like fibrils.

作者信息

Lian Hui-Yong, Zhang Hong, Zhang Zai-Rong, Loovers Harriët M, Jones Gary W, Rowling Pamela J E, Itzhaki Laura S, Zhou Jun-Mei, Perrett Sarah

机构信息

National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, 15 Datun Road, Chaoyang District, Beijing 100101, China.

出版信息

J Biol Chem. 2007 Apr 20;282(16):11931-40. doi: 10.1074/jbc.M606856200. Epub 2007 Feb 26.

Abstract

Ure2 is the protein determinant of the [URE3] prion phenotype in Saccharomyces cerevisiae and consists of a flexible N-terminal prion-determining domain and a globular C-terminal glutathione transferase-like domain. Overexpression of the type I Hsp40 member Ydj1 in yeast cells has been found to result in the loss of [URE3]. However, the mechanism of prion curing by Ydj1 remains unclear. Here we tested the effect of overexpression of Hsp40 members Ydj1, Sis1, and Apj1 and also Hsp70 co-chaperones Cpr7, Cns1, Sti1, and Fes1 in vivo and found that only Ydj1 showed a strong curing effect on [URE3]. We also investigated the interaction of Ydj1 with Ure2 in vitro. We found that Ydj1 was able to suppress formation of amyloid-like fibrils of Ure2 by delaying the process of fibril formation, as monitored by thioflavin T binding and atomic force microscopy imaging. Controls using bovine serum albumin, Sis1, or the human Hsp40 homologues Hdj1 or Hdj2 showed no significant inhibitory effect. Ydj1 was only effective when added during the lag phase of fibril formation, suggesting that it interacts with Ure2 at an early stage in fibril formation and delays the nucleation process. Using surface plasmon resonance and size exclusion chromatography, we demonstrated a direct interaction between Ydj1 and both wild type and N-terminally truncated Ure2. In contrast, Hdj2, which did not suppress fibril formation, did not show this interaction. The results suggest that Ydj1 inhibits Ure2 fibril formation by binding to the native state of Ure2, thus delaying the onset of oligomerization.

摘要

Ure2是酿酒酵母中[URE3]朊病毒表型的蛋白质决定因素,由一个灵活的N端朊病毒决定结构域和一个球状的C端谷胱甘肽转移酶样结构域组成。已发现酵母细胞中I型Hsp40成员Ydj1的过表达会导致[URE3]的丧失。然而,Ydj1治愈朊病毒的机制仍不清楚。在这里,我们在体内测试了Hsp40成员Ydj1、Sis1和Apj1以及Hsp70共伴侣Cpr7、Cns1、Sti1和Fes1过表达的影响,发现只有Ydj1对[URE3]表现出强烈的治愈效果。我们还在体外研究了Ydj1与Ure2的相互作用。我们发现,通过硫黄素T结合和原子力显微镜成像监测,Ydj1能够通过延迟原纤维形成过程来抑制Ure2淀粉样原纤维的形成。使用牛血清白蛋白、Sis1或人Hsp40同源物Hdj1或Hdj2作为对照,未显示出明显的抑制作用。Ydj1仅在原纤维形成的延迟期添加时才有效,这表明它在原纤维形成的早期与Ure2相互作用并延迟成核过程。使用表面等离子体共振和尺寸排阻色谱,我们证明了Ydj1与野生型和N端截短的Ure2之间存在直接相互作用。相比之下,不抑制原纤维形成的Hdj2没有显示出这种相互作用。结果表明,Ydj1通过与Ure2的天然状态结合来抑制Ure2原纤维形成,并因此延迟寡聚化的开始。

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