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首页> 外文期刊>FEMS Yeast Research >Quantitative assessment of chaperone binding to amyloid aggregates identifies specificity of Hsp40 interaction with yeast prion fibrils
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Quantitative assessment of chaperone binding to amyloid aggregates identifies specificity of Hsp40 interaction with yeast prion fibrils

机译:对淀粉样蛋白聚集体的伴侣结合的定量评估鉴定了Hsp40与酵母朊病毒原纤维的特异性

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摘要

Yeast self-perpetuating protein aggregates (yeast prions) provide a framework to investigate the interaction of misfolded proteins with the protein quality control machinery. The major component of this system that facilitates propagation of all known yeast amyloid prions is the Hsp104 chaperone that catalyzes fibril fragmentation. Overproduction of Hsp104 cures some yeast prions via a fragmentation-independent mechanism. Importantly, major cytosolic chaperones of the Hsp40 group, Sis1 and Ydj1, oppositely affect yeast prion propagation, and are capable of stimulating different activities of Hsp104. In this work, we developed a quantitative method to investigate the Hsp40 binding to amyloid aggregates. We demonstrate that Sis1 binds fibrils formed by the Sup35NM protein with higher affinity compared to Ydj1. Moreover, the interaction of Sis1 with the fibrils formed by the other yeast prion protein, Rnq1, is orders of magnitude weaker. We show that the deletion of the dimerization domain of Sis1 (crucial for the curing of [PSI+] by excess Hsp104) decreases its affinity to both Sup35NM and Rnq1 fibrils. Taken together, these results suggest that tight binding of Hsp40 to the amyloid fibrils is likely to enhance aggregate malpartition instead of fibril fragmentation.
机译:酵母自我延长蛋白质聚集体(酵母朊病毒)提供了一种框架,用于研究错误的蛋白质与蛋白质质量控​​制机械的相互作用。该系统的主要成分有助于所有已知的酵母淀粉样蛋白朊病毒朊病毒伴伴催化原纤维碎裂的HSP104伴侣。 HSP104的过度生产通过碎片无关的机制来治疗一些酵母朊病毒。重要的是,HSP40组,SIS1和YDJ1的主要细胞骨蛋白,相反地影响酵母朊病毒繁殖,并且能够刺激HSP104的不同活动。在这项工作中,我们开发了一种定量方法,以研究Hsp40与淀粉样蛋白聚集体的结合。我们证明SIS1与YDJ1相比,SIS1与Sup35NM蛋白质形成的原纤维含有更高的亲和力。此外,SIS1与由其他酵母朊病毒蛋白质RNQ1形成的原纤维的相互作用是较差的秩序。我们表明,SIS1的二聚化结构域(通过过量的HSP104的固化至关重要的缺失)降低了对Sup35NM和RNQ1原纤维的亲和力。总之,这些结果表明Hsp40对淀粉样蛋白原纤维的紧密结合可能增强骨髓间隔物代替纤维碎片。

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