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在酿酒酵母中对多药耐药泵Pdr5抑制剂进行的一种新型筛选。

A novel screening for inhibitors of a pleiotropic drug resistant pump, Pdr5, in Saccharomyces cerevisiae.

作者信息

Hiraga K, Wanigasekera A, Sugi H, Hamanaka N, Oda K

机构信息

Department of Applied Biology, Faculty of Textile Science, Kyoto Institute of Technology, Japan.

出版信息

Biosci Biotechnol Biochem. 2001 Jul;65(7):1589-95. doi: 10.1271/bbb.65.1589.

Abstract

Yeast is an excellent model system of eukaryotes for the study of molecular mechanisms of ATP-binding cassette transporters. Pdr5 protein is a yeast Saccharomyces cerevisiae ATP-binding cassette transporter conferring resistance to several unrelated drugs. Here, we described a novel drug screening system designated to detect compounds that inhibit the function of Pdr5. An indicator strain with increased drug sensitivity was constructed with an ergosterol-deficient background (delta syr1/erg3 null mutation). The sensitivity of the indicator strain (delta syr1/erg3 delta pdr5 delta snq2) to the Pdr5 substrates, cycloheximide and cerulenin, was increased 16-fold and 4-fold against wild type, respectively. The screening system is mainly based on the growth inhibition of the PDR5-overexpressed indicator strain with the combination of a sample and cycloheximide or cerulenin. The effect of an mdr inhibitor, FK506 on the screening system was clearly detected even at a low concentration (approximately 0.5 microg/ml). In addition, accumulation of rhodamine 6G in the cells was detected as a result of Pdr5 inhibition by FK506. These results indicated that the screening system is useful for a sensitive screening of Pdr5-specific inhibitors with low toxicity.

摘要

酵母是用于研究ATP结合盒转运蛋白分子机制的优秀真核生物模型系统。Pdr5蛋白是酿酒酵母中的一种ATP结合盒转运蛋白,赋予对几种不相关药物的抗性。在此,我们描述了一种新型药物筛选系统,旨在检测抑制Pdr5功能的化合物。构建了一种具有药物敏感性增加的指示菌株,其背景为麦角固醇缺乏(δsyr1/erg3基因敲除突变)。指示菌株(δsyr1/erg3δpdr5δsnq2)对Pdr5底物环己酰亚胺和浅蓝菌素的敏感性相对于野生型分别增加了16倍和4倍。该筛选系统主要基于样品与环己酰亚胺或浅蓝菌素组合对过表达PDR5的指示菌株的生长抑制。即使在低浓度(约0.5微克/毫升)下,也能清楚地检测到多药耐药抑制剂FK506对筛选系统的影响。此外,由于FK506抑制Pdr5,检测到罗丹明6G在细胞中的积累。这些结果表明,该筛选系统可用于灵敏筛选低毒性的Pdr5特异性抑制剂。

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