From the Department of Genetics and Biotechnology, St. Petersburg State University, Saint Petersburg, Russia.
J Biol Chem. 2013 Oct 4;288(40):28503-13. doi: 10.1074/jbc.M113.471805. Epub 2013 Aug 21.
Recent studies have shown that Sup35p prion fibrils probably have a parallel in-register β-structure. However, the part(s) of the N-domain critical for fibril formation and maintenance of the [PSI(+)] phenotype remains unclear. Here we designed a set of five SUP35 mutant alleles (sup35(KK)) with lysine substitutions in each of five N-domain repeats, and investigated their effect on infectivity and ability of corresponding proteins to aggregate and coaggregate with wild type Sup35p in the [PSI(+)] strain. Alleles sup35-M1 (Y46K/Q47K) and sup35-M2 (Q61K/Q62K) led to prion loss, whereas sup35-M3 (Q70K/Q71K), sup35-M4 (Q80K/Q81K), and sup35-M5 (Q89K/Q90K) were able to maintain the [PSI(+)] prion. This suggests that the critical part of the parallel in-register β-structure for the studied [PSI(+)] prion variant lies in the first 63-69 residues. Our study also reveals an unexpected interplay between the wild type Sup35p and proteins expressed from the sup35(KK) alleles during prionization. Both Sup35-M1p and Sup35-M2p coaggregated with Sup35p, but only sup35-M2 led to prion loss in a dominant manner. We suggest that in the fibrils, Sup35p can bind to Sup35-M1p in the same conformation, whereas Sup35-M2p only allowed the Sup35p conformation that leads to the non-heritable fold. Mutations sup35-M4 and sup35-M5 influence the structure of the prion forming region to a lesser extent, and can lead to the formation of new prion variants.
最近的研究表明,Sup35p 朊病毒纤维可能具有平行的在位β结构。然而,对于纤维形成和维持 [PSI(+)]表型至关重要的 N 结构域的部分仍然不清楚。在这里,我们设计了一组五个 SUP35 突变等位基因(sup35(KK)),在五个 N 结构域重复中的每个位置都有赖氨酸取代,并研究了它们对感染性的影响,以及相应的蛋白质在 [PSI(+)]菌株中与野生型 Sup35p 聚集和共聚集的能力。等位基因 sup35-M1(Y46K/Q47K)和 sup35-M2(Q61K/Q62K)导致朊病毒丢失,而 sup35-M3(Q70K/Q71K)、sup35-M4(Q80K/Q81K)和 sup35-M5(Q89K/Q90K)能够维持 [PSI(+)]朊病毒。这表明,研究的 [PSI(+)]朊病毒变体的平行在位β结构的关键部分位于前 63-69 个残基。我们的研究还揭示了野生型 Sup35p 和来自 sup35(KK)等位基因的蛋白质在朊病毒化过程中的一种意外相互作用。Sup35-M1p 和 Sup35-M2p 都与 Sup35p 共聚集,但只有 sup35-M2 以显性方式导致朊病毒丢失。我们认为,在纤维中,Sup35p 可以与 Sup35-M1p 以相同的构象结合,而 Sup35-M2p 只允许导致非遗传性折叠的 Sup35p 构象。突变 sup35-M4 和 sup35-M5 对形成朊病毒的区域结构的影响较小,并且可以导致新的朊病毒变体的形成。