Laboratory of Biochemistry and Genetics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892-0830, USA.
Genetics. 2021 Oct 2;219(2). doi: 10.1093/genetics/iyab129.
[PSI+] is a prion of Saccharomyces cerevisiae Sup35, an essential ribosome release factor. In [PSI+] cells, most Sup35 is sequestered into insoluble amyloid aggregates. Despite this depletion, [PSI+] prions typically affect viability only modestly, so [PSI+] must balance sequestering Sup35 into prions with keeping enough Sup35 functional for normal growth. Sis1 is an essential J-protein regulator of Hsp70 required for the propagation of amyloid-based yeast prions. C-terminally truncated Sis1 (Sis1JGF) supports cell growth in place of wild-type Sis1. Sis1JGF also supports [PSI+] propagation, yet [PSI+] is highly toxic to cells expressing only Sis1JGF. We searched extensively for factors that mitigate the toxicity and identified only Sis1, suggesting Sis1 is uniquely needed to protect from [PSI+] toxicity. We find the C-terminal substrate-binding domain of Sis1 has a critical and transferable activity needed for the protection. In [PSI+] cells that express Sis1JGF in place of Sis1, Sup35 was less soluble and formed visibly larger prion aggregates. Exogenous expression of a truncated Sup35 that cannot incorporate into prions relieved [PSI+] toxicity. Together our data suggest that Sis1 has separable roles in propagating Sup35 prions and in moderating Sup35 aggregation that are crucial to the balance needed for the propagation of what otherwise would be lethal [PSI+] prions.
PSI+ 是酿酒酵母 Sup35 的朊病毒,是一种必需的核糖体释放因子。在 PSI+ 细胞中,大多数 Sup35 被隔离到不溶性淀粉样聚集物中。尽管 Sup35 大量耗竭,但 PSI+ 朊病毒通常仅适度影响细胞活力,因此 PSI+ 必须平衡将 Sup35 隔离到朊病毒中,同时保持足够的 Sup35 功能以维持正常生长。Sis1 是一种必需的 J 蛋白调节剂,可调节 Hsp70,从而促进淀粉样酵母朊病毒的传播。C 端截断的 Sis1(Sis1JGF)可替代野生型 Sis1 支持细胞生长。Sis1JGF 还支持 PSI+ 的传播,但仅表达 Sis1JGF 的细胞对 PSI+ 具有高度毒性。我们广泛搜索了减轻毒性的因素,仅鉴定到 Sis1,表明 Sis1 是唯一需要保护免受 PSI+ 毒性的因素。我们发现 Sis1 的 C 端底物结合结构域具有保护作用所必需的关键和可转移的活性。在表达 Sis1JGF 替代 Sis1 的 PSI+ 细胞中,Sup35 的可溶性降低,并且形成可见的更大的朊病毒聚集物。外源性表达不能掺入朊病毒的截断 Sup35 可缓解 PSI+ 毒性。我们的数据表明,Sis1 在传播 Sup35 朊病毒和调节 Sup35 聚集方面具有可分离的作用,这对于平衡否则会致命的 PSI+ 朊病毒的传播至关重要。