Department of Chemistry, Lafayette College, Easton, PA, 18042, USA.
Optical Microscopy and Analysis Laboratory, Office of Science and Technology Resources, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Frederick, MD, 21702, USA.
Curr Genet. 2020 Feb;66(1):51-58. doi: 10.1007/s00294-019-01006-5. Epub 2019 Jun 22.
Prions are self-propagating protein isoforms that are typically amyloid. In Saccharomyces cerevisiae, amyloid prion aggregates are fragmented by a trio involving three classes of chaperone proteins: Hsp40s, also known as J-proteins, Hsp70s, and Hsp104. Hsp104, the sole Hsp100-class disaggregase in yeast, along with the Hsp70 Ssa and the J-protein Sis1, is required for the propagation of all known amyloid yeast prions. However, when Hsp104 is ectopically overexpressed, only the prion [PSI] is efficiently eliminated from cell populations via a highly debated mechanism that also requires Sis1. Recently, we reported roles for two additional J-proteins, Apj1 and Ydj1, in this process. Deletion of Apj1, a J-protein involved in the degradation of sumoylated proteins, partially blocks Hsp104-mediated [PSI] elimination. Apj1 and Sis1 were found to have overlapping functions, as overexpression of one compensates for loss of function of the other. In addition, overexpression of Ydj1, the most abundant J-protein in the yeast cytosol, completely blocks Hsp104-mediated curing. Yeast prions exhibit structural polymorphisms known as "variants"; most intriguingly, these J-protein effects were only observed for strong variants, suggesting variant-specific mechanisms. Here, we review these results and present new data resolving the domains of Apj1 responsible, specifically implicating the involvement of Apj1's Q/S-rich low-complexity domain.
朊病毒是自我传播的蛋白质异构体,通常是淀粉样的。在酿酒酵母中,淀粉样蛋白朊病毒聚集体被涉及三种伴侣蛋白的三聚体片段化:Hsp40,也称为 J 蛋白,Hsp70 和 Hsp104。Hsp104 是酵母中唯一的 Hsp100 类解聚酶,与 Hsp70 Ssa 和 J 蛋白 Sis1 一起,是所有已知淀粉样酵母朊病毒传播所必需的。然而,当 Hsp104 异位过表达时,只有朊病毒 [PSI] 通过一种高度争议的机制有效地从细胞群体中消除,该机制还需要 Sis1。最近,我们报道了另外两个 J 蛋白 Apj1 和 Ydj1 在这个过程中的作用。Apj1 是一种参与泛素化蛋白降解的 J 蛋白,其缺失部分阻断了 Hsp104 介导的 [PSI] 消除。Apj1 和 Sis1 具有重叠的功能,因为过表达一种可以补偿另一种功能丧失。此外,酵母细胞质中含量最丰富的 J 蛋白 Ydj1 的过表达完全阻断了 Hsp104 介导的治愈。酵母朊病毒表现出称为“变体”的结构多态性;最有趣的是,这些 J 蛋白效应仅在强变体中观察到,表明存在变体特异性机制。在这里,我们回顾了这些结果,并提供了新的数据来解析 Apj1 负责的结构域,特别是明确了 Apj1 的 Q/S 丰富的低复杂度结构域的参与。