Kurahashi Hiroshi, Nakamura Yoshikazu
Department of Basic Medical Sciences, Institute of Medical Science, University of Tokyo, 4-6-1 Shirokanedai, Minato-ku, Tokyo 108-8639, Japan.
Mol Microbiol. 2007 Mar;63(6):1669-83. doi: 10.1111/j.1365-2958.2007.05629.x.
The yeast prion [PSI(+)] represents an aggregated state of the translation termination factor Sup35 resulting in the tendency of ribosomes to readthrough stop codons. In this study, we constructed an auxotrophic chromosomal marker, ura3-197 (nonsense allele), applicable to selection for loss of [PSI(+)] to [psi(-)]. Unlike [psi(-)] yeast strains, [PSI(+)] yeast strains exhibit nonsense suppression of the ura3-197 allele and are not viable in the presence of 5-fluoroorotic acid (5-FOA) that is converted to a toxic material by the readthrough product of Ura3. We selected 20 5-FOA-resistant, loss-of-[PSI(+)], mutants spontaneously or by transposon-mediated mutagenesis from ura3-197[PSI(+)] cells. All of the 20 [psi(-)] isolates were affected in Hsp104, a protein-remodelling factor. Although most of them were disabled in a normal Hsp104 function for thermotolerance, three single mutants, L462R, P557L and D704N, remained thermotolerant. Importantly, L462R and D704N also eliminate other yeast prions [URE3] and [PIN(+)], while P557L does not, suggesting that Hsp104 harbours a unique activity to prion propagation independent of its function in thermotolerance. The mutations that are specific to prion propagation are clustered around the lateral channel of the Hsp104 hexamer, suggesting a crucial and specific role of this channel for prion propagation.
酵母朊病毒[PSI(+)]代表翻译终止因子Sup35的聚集状态,导致核糖体有通读终止密码子的倾向。在本研究中,我们构建了一个营养缺陷型染色体标记ura3 - 197(无义等位基因),适用于筛选[PSI(+)]向[psi(-)]的丢失。与[psi(-)]酵母菌株不同,[PSI(+)]酵母菌株对ura3 - 197等位基因表现出无义抑制,并且在5 - 氟乳清酸(5 - FOA)存在时无法存活,5 - FOA会被Ura3的通读产物转化为有毒物质。我们从ura3 - 197[PSI(+)]细胞中自发地或通过转座子介导的诱变筛选出20个对5 - FOA有抗性、[PSI(+)]丢失的突变体。所有20个[psi(-)]分离株在Hsp104(一种蛋白质重塑因子)中都受到影响。尽管它们中的大多数在正常的Hsp104耐热功能中失活,但三个单突变体L462R、P557L和D704N仍具有耐热性。重要的是,L462R和D704N还消除了其他酵母朊病毒[URE3]和[PIN(+)],而P557L则没有,这表明Hsp104具有一种独立于其耐热功能的对朊病毒传播的独特活性。朊病毒传播特有的突变聚集在Hsp104六聚体的侧向通道周围,表明该通道对朊病毒传播起着关键且特定的作用。