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酿酒酵母中,适应乙酸和抗唑类药物需要编码主要易化子超家族质膜转运蛋白的AZR1基因(开放阅读框YGR224w)的表达。

Expression of the AZR1 gene (ORF YGR224w), encoding a plasma membrane transporter of the major facilitator superfamily, is required for adaptation to acetic acid and resistance to azoles in Saccharomyces cerevisiae.

作者信息

Tenreiro S, Rosa P C, Viegas C A, Sá-Correia I

机构信息

Centro de Engenharia Biológica e Química, Instituto Superior Técnico, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.

出版信息

Yeast. 2000 Dec;16(16):1469-81. doi: 10.1002/1097-0061(200012)16:16<1469::AID-YEA640>3.0.CO;2-A.

Abstract

In this work, we report results on the functional analysis of Saccharomyces cerevisiae ORF YGR224w, predicted to code for an integral membrane protein, with 14 potential transmembrane segments, belonging to the major facilitator superfamily (MFS) of transporters which are required for multiple-drug resistance (MDR). This MFS-MDR homologue is required for yeast adaptation to high stress imposed by low-chain organic acids, in particular by acetic acid, and for resistance to azoles, especially to ketoconazole and fluconazole; the encoding gene was thus named the AZR1 gene. These conclusions were based on the higher susceptibility to these compounds of an azr1Delta deletion mutant strain compared with the wild-type and on the increased resistance of both azr1Delta and wild-type strains upon increased expression of the AZR1 gene from a centromeric plasmid clone. AZR1 gene expression reduces the duration of acetic acid-induced latency, although the growth kinetics of adapted cells under acetic acid stress is apparently independent of AZR1 expression level. Fluorescence microscopy observation of the distribution of the Azr1-GFP fusion protein in yeast living cells indicated that Azr1 is a plasma membrane protein. Studies carried out to gain some understanding of how this plasma membrane putative transporter facilitates yeast adaptation to acetic acid did not implicate Azr1p in the alteration of acetic acid accumulation into the cell through the active efflux of acetate.

摘要

在本研究中,我们报告了对酿酒酵母开放阅读框YGR224w功能分析的结果。该开放阅读框预计编码一种整合膜蛋白,有14个潜在的跨膜区段,属于转运蛋白的主要易化子超家族(MFS),而MFS与多药耐药性(MDR)相关。这种MFS-MDR同源物是酵母适应低链有机酸(特别是乙酸)施加的高胁迫以及对唑类(尤其是酮康唑和氟康唑)产生抗性所必需的;因此,编码该蛋白的基因被命名为AZR1基因。这些结论基于azr1Δ缺失突变株与野生型相比对这些化合物的敏感性更高,以及从着丝粒质粒克隆中增加AZR1基因表达后azr1Δ和野生型菌株的抗性均增强。AZR1基因的表达缩短了乙酸诱导的潜伏期,尽管在乙酸胁迫下适应细胞的生长动力学显然与AZR1表达水平无关。对酵母活细胞中Azr1-GFP融合蛋白分布的荧光显微镜观察表明,Azr1是一种质膜蛋白。为了解这种质膜假定转运蛋白如何促进酵母对乙酸的适应而进行的研究并未表明Azr1p通过乙酸的主动外排参与细胞内乙酸积累的改变。

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