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转录谱分析鉴定出酵母中甾醇摄取所需的ATP结合盒转运蛋白超家族的两个成员。

Transcriptional profiling identifies two members of the ATP-binding cassette transporter superfamily required for sterol uptake in yeast.

作者信息

Wilcox Lisa J, Balderes Dina A, Wharton Brook, Tinkelenberg Arthur H, Rao Govinda, Sturley Stephen L

机构信息

Institute of Human Nutrition and Department of Pediatrics, Columbia University College of Physicians and Surgeons, New York, New York 10032, USA.

出版信息

J Biol Chem. 2002 Sep 6;277(36):32466-72. doi: 10.1074/jbc.M204707200. Epub 2002 Jun 20.

Abstract

In contrast to lipoprotein-mediated sterol uptake, free sterol influx by eukaryotic cells is poorly understood. To identify components of non-lipoprotein-mediated sterol uptake, we utilized strains of Saccharomyces cerevisiae that accumulate exogenous sterol due to a neomorphic mutation in the transcription factor, UPC2. Two congenic upc2-1 strains, differing quantitatively in aerobic sterol uptake due to a modifying mutation in the HAP1 transcription factor, were compared using DNA microarrays. We identified 9 genes as responsive to UPC2 that were also induced under anaerobiosis, when sterol uptake is essential. Deletion mutants in these genes were assessed for sterol influx in the upc2-1 background. UPC2 itself was up-regulated under these conditions and was required for aerobic sterol influx. Deletion of the ATP-binding cassette transporters YOR011w (AUS1) or PDR11, or a putative cell wall protein encoded by DAN1, significantly reduced sterol influx. Sodium azide and vanadate inhibited sterol uptake, consistent with the participation of ATP-binding cassette transporters. We hypothesized that the physiological role of Aus1p and Pdr11p is to mediate sterol uptake when sterol biosynthesis is compromised. Accordingly, expression of AUS1 or PDR11 was required for anaerobic growth and sterol uptake. We proposed similar molecules may be important components of sterol uptake in all eukaryotes.

摘要

与脂蛋白介导的甾醇摄取不同,真核细胞对游离甾醇内流的了解较少。为了鉴定非脂蛋白介导的甾醇摄取的组成成分,我们利用了酿酒酵母菌株,这些菌株由于转录因子UPC2中的新形态突变而积累外源性甾醇。使用DNA微阵列比较了两个同基因的upc2-1菌株,它们由于HAP1转录因子中的修饰突变而在需氧甾醇摄取上存在定量差异。我们鉴定出9个对UPC2有反应的基因,这些基因在厌氧条件下(甾醇摄取至关重要时)也会被诱导。评估了这些基因的缺失突变体在upc2-1背景下的甾醇内流情况。UPC2本身在这些条件下会上调,并且是需氧甾醇内流所必需的。ATP结合盒转运蛋白YOR011w(AUS1)或PDR11,或由DAN1编码的一种假定的细胞壁蛋白的缺失,显著降低了甾醇内流。叠氮化钠和钒酸盐抑制甾醇摄取,这与ATP结合盒转运蛋白的参与一致。我们假设,当甾醇生物合成受损时,Aus1p和Pdr11p的生理作用是介导甾醇摄取。因此,厌氧生长和甾醇摄取需要AUS1或PDR11的表达。我们提出,类似的分子可能是所有真核生物中甾醇摄取的重要组成成分。

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