转录因子 Mcm1 和 Sfp1 可通过改变 SUP35 基因的表达来影响 [PSI+]朊病毒的表型

A. Matveenko, Anastasiia S. Mikhailichenko, P. Drozdova, G. Zhouravleva
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摘要

Mcm1 是一种重要的富含 Q/N 的转录因子。富含 Q/N 的蛋白质会相互影响,其中许多会影响由翻译终止因子 Sup35(eRF3)形成的[PSI+]朊病毒。我们发现,瞬时过表达 MCM1 增加了[PSI+]菌株的无义抑制和 SUP35 的转录。由于我们发现另一个富含 Q/N 的转录因子 Sfp1 也有类似的作用,因此我们在此重点研究 Mcm1 和 Sfp1 在 SUP35 表达中的作用,以及 Sfp1 对编码另一个释放因子 Sup45(eRF1)的基因表达的影响。对 SUP35 启动子的突变表明,即使在 MCM1 过表达期间,潜在的 Mcm1 结合位点也不会影响 Sup35 蛋白水平或无义抑制。Mcm1 本身既不会在体内形成聚集体,也不会影响 Sup35 的聚集。相反,Sfp1 结合位点的突变降低了 Sup35 的产生和过量 Sfp1 的[PSI+]毒性。SUP45启动子中的Sfp1结合位点突变会更大幅度地降低SUP45的表达和增加无义抑制。我们的数据表明,Mcm1 和 Sfp1 的作用机制不同。Mcm1似乎不太可能直接调控SUP35的表达,而Sfp1似乎通过其结合位点发挥作用,直接激活SUP35的表达,进而影响[PSI+]朊病毒的表型和毒性。
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Transcription Factors Mcm1 and Sfp1 May Affect [PSI+] Prion Phenotype by Altering the Expression of the SUP35 Gene
Mcm1 is an essential Q/N-rich transcription factor. Q/N-rich proteins interact with each other, and many affect the [PSI+] prion formed by the translation termination factor Sup35 (eRF3). We found that transient MCM1 overexpression increased nonsense suppression in [PSI+] strains and SUP35 transcription. As we had discovered similar effects of another Q/N-rich transcription factor, Sfp1, here we focus on the roles of Mcm1 and Sfp1 in SUP35 expression, as well as on the effects of Sfp1 on the expression of the gene encoding another release factor, Sup45 (eRF1). Mutations in the SUP35 promoter showed that none of the potential Mcm1 binding sites affected the Sup35 protein level or nonsense suppression, even during MCM1 overexpression. Mcm1 itself neither formed aggregates in vivo nor affected Sup35 aggregation. In contrast, a mutation in the Sfp1-binding site decreased Sup35 production and [PSI+] toxicity of excess Sfp1. Mutation of the Sfp1 binding site in the SUP45 promoter lowered SUP45 expression and increased nonsense suppression even more drastically. Our data indicate that the mechanisms of Mcm1 and Sfp1 action differ. While Mcm1 seems unlikely to directly regulate SUP35 expression, Sfp1 appears to act through its binding sites and to directly activate SUP35 expression, which in turn may influence the [PSI+] prion phenotype and toxicity.
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