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酿酒酵母多药耐药性调控因子Pdr1p的功能解析

Functional dissection of Pdr1p, a regulator of multidrug resistance in Saccharomyces cerevisiae.

作者信息

Kolaczkowska A, Kolaczkowski M, Delahodde A, Goffeau A

机构信息

Unité de Biochimie Physiologique, Université Catholique de Louvain, Place Croix du Sud 2-20, 1348 Louvain-la-Neuve, Belgium.

出版信息

Mol Genet Genomics. 2002 Mar;267(1):96-106. doi: 10.1007/s00438-002-0642-0. Epub 2002 Feb 20.

Abstract

Pleiotropic drug resistance in the yeast Saccharomyces cerevisiae results mainly from the overexpression of genes encoding membrane efflux pumps, the so-called ABC and MFS transporters. These pleiotropic drug resistance loci are under the control of the key transcription factors Pdr1p and Pdr3p. We have identified and characterized several new domains of Pdr1p. By testing a series of LexA-PDR1 derivatives for their capacity to activate a GAL1-lacZ reporter gene we have shown that the C-terminal domain of Pdr1p comprising amino acids 879-1036 is involved in transcriptional activation, and that the point mutation pdr1-8 increases its efficiency. Removal of amino acids 1006-1029, which include a polyasparagine stretch, decreases the activation function. Internal deletions within Pdr1p reveal the presence of a large regulatory domain, and a short but strong inhibitory subdomain spanning amino acids 257-316, in which the up-regulating mutations pdr1-2, pdr1-6 and pdr1-7 are located. A mini-Pdr1p consisting of only the DNA-binding and the activation domains strongly up-regulates the expression of the major target genes PDR5, SNQ2 and YOR1, resulting in enhanced multidrug resistance.

摘要

酿酒酵母中的多药耐药性主要源于编码膜转运泵(即所谓的ABC和MFS转运蛋白)的基因过表达。这些多药耐药位点受关键转录因子Pdr1p和Pdr3p的调控。我们已鉴定并表征了Pdr1p的几个新结构域。通过测试一系列LexA-PDR1衍生物激活GAL1-lacZ报告基因的能力,我们发现Pdr1p包含氨基酸879 - 1036的C末端结构域参与转录激活,且点突变pdr1-8提高了其效率。去除包含多聚天冬酰胺序列的氨基酸1006 - 1029会降低激活功能。Pdr1p内部缺失揭示了一个大的调节结构域的存在,以及一个跨越氨基酸257 - 316的短而强的抑制亚结构域,上调突变pdr1-2、pdr1-6和pdr1-7位于该亚结构域中。仅由DNA结合结构域和激活结构域组成的微型Pdr1p强烈上调主要靶基因PDR5、SNQ2和YOR1的表达,导致多药耐药性增强。

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