Barbitoff Yury A, Matveenko Andrew G, Zhouravleva Galina A
Department of Genetics and Biotechnology, St. Petersburg State University, 199034 St. Petersburg, Russia.
Laboratory of Amyloid Biology, St. Petersburg State University, 199034 St. Petersburg, Russia.
J Fungi (Basel). 2022 Jan 27;8(2):122. doi: 10.3390/jof8020122.
Baker's yeast is an important model organism that is applied to study various aspects of eukaryotic cell biology. Prions in yeast are self-perpetuating heritable protein aggregates that can be leveraged to study the interaction between the protein quality control (PQC) machinery and misfolded proteins. More than ten prions have been identified in yeast, of which the most studied ones include [], [], and []. While all of the major molecular chaperones have been implicated in propagation of yeast prions, many of these chaperones differentially impact propagation of different prions and/or prion variants. In this review, we summarize the current understanding of the life cycle of yeast prions and systematically review the effects of different chaperone proteins on their propagation. Our analysis clearly shows that Hsp40 proteins play a central role in prion propagation by determining the fate of prion seeds and other amyloids. Moreover, direct prion-chaperone interaction seems to be critically important for proper recruitment of all PQC components to the aggregate. Recent results also suggest that the cell asymmetry apparatus, cytoskeleton, and cell signaling all contribute to the complex network of prion interaction with the yeast cell.
面包酵母是一种重要的模式生物,可用于研究真核细胞生物学的各个方面。酵母中的朊病毒是可自我延续的可遗传蛋白质聚集体,可用于研究蛋白质质量控制(PQC)机制与错误折叠蛋白质之间的相互作用。在酵母中已鉴定出十多种朊病毒,其中研究最多的包括[]、[]和[]。虽然所有主要的分子伴侣都与酵母朊病毒的传播有关,但其中许多伴侣对不同朊病毒和/或朊病毒变体的传播有不同影响。在本综述中,我们总结了目前对酵母朊病毒生命周期的理解,并系统地回顾了不同伴侣蛋白对其传播的影响。我们的分析清楚地表明,Hsp40蛋白通过决定朊病毒种子和其他淀粉样蛋白的命运,在朊病毒传播中发挥核心作用。此外,直接的朊病毒-伴侣相互作用对于将所有PQC成分正确募集到聚集体中似乎至关重要。最近的结果还表明,细胞不对称装置、细胞骨架和细胞信号传导都有助于朊病毒与酵母细胞相互作用的复杂网络。