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对乙酰氨基酚对酿酒酵母中泛素稳态的影响。

The effect of acetaminophen on ubiquitin homeostasis in Saccharomyces cerevisiae.

作者信息

Huseinovic Angelina, van Leeuwen Jolanda S, van Welsem Tibor, Stulemeijer Iris, van Leeuwen Fred, Vermeulen Nico P E, Kooter Jan M, Vos J Chris

机构信息

AIMMS-Division of Molecular Toxicology, Department of Chemistry and Pharmaceutical Sciences, VU University Amsterdam, Amsterdam, The Netherlands.

Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, Toronto, Ontario, Canada.

出版信息

PLoS One. 2017 Mar 14;12(3):e0173573. doi: 10.1371/journal.pone.0173573. eCollection 2017.

Abstract

Acetaminophen (APAP), although considered a safe drug, is one of the major causes of acute liver failure by overdose, and therapeutic chronic use can cause serious health problems. Although the reactive APAP metabolite N-acetyl-p-benzoquinoneimine (NAPQI) is clearly linked to liver toxicity, toxicity of APAP is also found without drug metabolism of APAP to NAPQI. To get more insight into mechanisms of APAP toxicity, a genome-wide screen in Saccharomyces cerevisiae for APAP-resistant deletion strains was performed. In this screen we identified genes related to the DNA damage response. Next, we investigated the link between genotype and APAP-induced toxicity or resistance by performing a more detailed screen with a library containing mutants of 1522 genes related to nuclear processes, like DNA repair and chromatin remodelling. We identified 233 strains that had an altered growth rate relative to wild type, of which 107 showed increased resistance to APAP and 126 showed increased sensitivity. Gene Ontology analysis identified ubiquitin homeostasis, regulation of transcription of RNA polymerase II genes, and the mitochondria-to-nucleus signalling pathway to be associated with APAP resistance, while histone exchange and modification, and vesicular transport were connected to APAP sensitivity. Indeed, we observed a link between ubiquitin levels and APAP resistance, whereby ubiquitin deficiency conferred resistance to APAP toxicity while ubiquitin overexpression resulted in sensitivity. The toxicity profile of various chemicals, APAP, and its positional isomer AMAP on a series of deletion strains with ubiquitin deficiency showed a unique resistance pattern for APAP. Furthermore, exposure to APAP increased the level of free ubiquitin and influenced the ubiquitination of proteins. Together, these results uncover a role for ubiquitin homeostasis in APAP-induced toxicity.

摘要

对乙酰氨基酚(APAP)虽然被认为是一种安全的药物,但却是过量服用导致急性肝衰竭的主要原因之一,长期治疗性使用也会引发严重的健康问题。尽管具有反应活性的APAP代谢产物N - 乙酰 - 对苯醌亚胺(NAPQI)与肝脏毒性明显相关,但在APAP未代谢为NAPQI的情况下也发现了APAP的毒性。为了更深入了解APAP毒性的机制,我们在酿酒酵母中进行了全基因组筛选,以寻找对APAP具有抗性的缺失菌株。在这次筛选中,我们鉴定出了与DNA损伤反应相关的基因。接下来,我们通过使用一个包含1522个与核过程相关基因(如DNA修复和染色质重塑)突变体的文库进行更详细的筛选,研究了基因型与APAP诱导的毒性或抗性之间的联系。我们鉴定出233个相对于野生型生长速率发生改变的菌株,其中107个对APAP的抗性增加,126个对APAP的敏感性增加。基因本体分析表明,泛素稳态、RNA聚合酶II基因转录调控以及线粒体到细胞核的信号通路与APAP抗性相关,而组蛋白交换和修饰以及囊泡运输与APAP敏感性相关。事实上,我们观察到泛素水平与APAP抗性之间存在联系,泛素缺乏赋予对APAP毒性的抗性,而泛素过表达则导致敏感性。各种化学物质、APAP及其位置异构体AMAP对一系列泛素缺乏缺失菌株的毒性谱显示出APAP独特的抗性模式。此外,暴露于APAP会增加游离泛素水平并影响蛋白质的泛素化。总之,这些结果揭示了泛素稳态在APAP诱导毒性中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02a8/5349473/667148c113b7/pone.0173573.g001.jpg

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