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棒曲霉素这种霉菌毒素对蛋白质毒性应激的诱导作用。

Induction of proteotoxic stress by the mycotoxin patulin.

作者信息

Guerra-Moreno Angel, Hanna John

机构信息

Department of Pathology, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, United States.

Department of Pathology, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, United States.

出版信息

Toxicol Lett. 2017 Jul 5;276:85-91. doi: 10.1016/j.toxlet.2017.05.015. Epub 2017 May 18.

Abstract

Patulin is a naturally occurring mycotoxin produced by a number of molds and may contaminate a wide variety of food products. In practice, patulin's main societal relevance concerns apple juice and its products. Multiple advisory bodies, including the U.S. Food and Drug Administration and the World Health Organization, recommend that producers monitor and limit patulin levels in apple juice products. The mechanism of patulin toxicity remains largely unknown. Here we show that patulin induces proteotoxic stress in the yeast S. cerevisiae. The transcription factor Rpn4 controls the abundance of the proteasome, the complex multisubunit protease that destroys proteins, including misfolded proteins. Rpn4 protein is strongly induced by patulin, and Rpn4 levels normalize over time, consistent with homeostatic regulation. A rpn4Δ mutant is highly sensitive to patulin, confirming the physiologic relevance of this response. Rpn4 is known to be regulated both transcriptionally and post-translationally. Patulin induces both pathways of regulation, but the post-transcriptional pathway predominates in controlling Rpn4 protein levels. These results indicate that proteotoxicity represents a major aspect of patulin toxicity. They not only have implications for patulin detoxification but in addition suggest the possibility of some potentially useful patulin applications.

摘要

展青霉素是由多种霉菌产生的一种天然存在的霉菌毒素,可能污染多种食品。在实际中,展青霉素与社会的主要关联在于苹果汁及其产品。包括美国食品药品监督管理局和世界卫生组织在内的多个咨询机构建议生产商监测并限制苹果汁产品中的展青霉素含量。展青霉素的毒性机制在很大程度上仍不为人知。在此我们表明展青霉素在酿酒酵母中诱导蛋白毒性应激。转录因子Rpn4控制蛋白酶体的丰度,蛋白酶体是一种复杂的多亚基蛋白酶,可降解蛋白质,包括错误折叠的蛋白质。展青霉素强烈诱导Rpn4蛋白表达,且随着时间推移Rpn4水平恢复正常,这与稳态调节一致。rpn4Δ突变体对展青霉素高度敏感,证实了这种反应的生理相关性。已知Rpn4在转录和翻译后水平均受到调控。展青霉素诱导这两种调控途径,但在控制Rpn4蛋白水平方面,转录后途径起主要作用。这些结果表明蛋白毒性是展青霉素毒性的一个主要方面。它们不仅对展青霉素解毒有影响,还暗示了展青霉素一些潜在有用应用的可能性。

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