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膜活性化合物激活转录因子Pdr1和Pdr3,这两个转录因子将酿酒酵母中的多药耐药性与膜脂稳态联系起来。

Membrane-active compounds activate the transcription factors Pdr1 and Pdr3 connecting pleiotropic drug resistance and membrane lipid homeostasis in saccharomyces cerevisiae.

作者信息

Schüller Christoph, Mamnun Yasmine M, Wolfger Hubert, Rockwell Nathan, Thorner Jeremy, Kuchler Karl

机构信息

Medical University Vienna, Max F. Perutz Laboratories, Department of Medical Biochemistry, A-1030 Vienna, Austria.

出版信息

Mol Biol Cell. 2007 Dec;18(12):4932-44. doi: 10.1091/mbc.e07-06-0610. Epub 2007 Sep 19.

Abstract

The Saccharomyces cerevisiae zinc cluster transcription factors Pdr1 and Pdr3 mediate general drug resistance to many cytotoxic substances also known as pleiotropic drug resistance (PDR). The regulatory mechanisms that activate Pdr1 and Pdr3 in response to the various xenobiotics are poorly understood. In this study, we report that exposure of yeast cells to 2,4-dichlorophenol (DCP), benzyl alcohol, nonionic detergents, and lysophospholipids causes rapid activation of Pdr1 and Pdr3. Furthermore, Pdr1/Pdr3 target genes encoding the ATP-binding cassette proteins Pdr5 and Pdr15 confer resistance against these compounds. Genome-wide transcript analysis of wild-type and pdr1Delta pdr3Delta cells treated with DCP reveals most prominently the activation of the PDR response but also other stress response pathways. Polyoxyethylene-9-laurylether treatment produced a similar profile with regard to activation of Pdr1 and Pdr3, suggesting activation of these by detergents. The Pdr1/Pdr3 response element is sufficient to confer regulation to a reporter gene by these substances in a Pdr1/Pdr3-dependent manner. Our data indicate that compounds with potential membrane-damaging or -perturbing effects might function as an activating signal for Pdr1 and Pdr3, and they suggest a role for their target genes in membrane lipid organization or remodeling.

摘要

酿酒酵母锌簇转录因子Pdr1和Pdr3介导对许多细胞毒性物质的普遍耐药性,也称为多药耐药性(PDR)。人们对响应各种外源生物激活Pdr1和Pdr3的调控机制了解甚少。在本研究中,我们报告酵母细胞暴露于2,4 - 二氯苯酚(DCP)、苯甲醇、非离子洗涤剂和溶血磷脂会导致Pdr1和Pdr3迅速激活。此外,编码ATP结合盒蛋白Pdr5和Pdr15的Pdr1 / Pdr3靶基因赋予对这些化合物的抗性。对用DCP处理的野生型和pdr1Δpdr3Δ细胞进行全基因组转录分析,最显著地揭示了PDR反应的激活,但也包括其他应激反应途径。聚氧乙烯 - 9 - 月桂醚处理在激活Pdr1和Pdr3方面产生了类似的情况,表明这些物质可激活Pdr1和Pdr3。Pdr1 / Pdr3反应元件足以以Pdr1 / Pdr3依赖的方式赋予这些物质对报告基因的调控作用。我们的数据表明,具有潜在膜损伤或膜扰动作用的化合物可能作为Pdr1和Pdr3的激活信号,并且表明它们的靶基因在膜脂组织或重塑中起作用。

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