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多效性酵母突变体中的特比萘芬抗性是由ERG1基因中的单个点突变引起的。

Terbinafine resistance in a pleiotropic yeast mutant is caused by a single point mutation in the ERG1 gene.

作者信息

Klobucníková Vlasta, Kohút Peter, Leber Regina, Fuchsbichler Sandra, Schweighofer Natascha, Turnowsky Friederike, Hapala Ivan

机构信息

Institute of Animal Biochemistry and Genetics, Slovak Academy of Sciences, Ivanka pri Dunaji, Slovak Republic.

出版信息

Biochem Biophys Res Commun. 2003 Sep 26;309(3):666-71. doi: 10.1016/j.bbrc.2003.08.051.

Abstract

A terbinafine-resistant mutant of the yeast Saccharomyces cerevisiae with a complex pleiotropic phenotype (resistance to terbinafine and itraconazole, sensitivity to several antifungal compounds, respiration deficiency, and temperature sensitivity) has been isolated after chemical mutagenesis. Detailed analysis revealed that some of its traits (thermosensitive growth, sensitivity to the polyene antimycotic nystatin and to calcofluor white) are linked to alterations in the cell wall. A single C1288G base change in the ERG1 gene resulting in the substitution of proline by alanine at position 430 in the enzyme squalene epoxidase (Erg1p) was identified as the sole cause of terbinafine resistance. This novel mutation in the ERG1 gene confers only partial resistance of Erg1p to terbinafine, however, even the low level of resistance enables terbinafine-treated mutant cells to maintain adequate ergosterol levels over longer cultivation periods. Lack of interference of squalene accumulation with growth of terbinafine-treated mutant cells indicates that the antimycotic effect of terbinafine in S. cerevisiae may be linked primarily to ergosterol depletion.

摘要

在化学诱变后,分离出了一株酿酒酵母的特比萘芬抗性突变体,其具有复杂的多效性表型(对特比萘芬和伊曲康唑耐药,对几种抗真菌化合物敏感,呼吸缺陷和温度敏感)。详细分析表明,其一些性状(热敏生长、对多烯抗真菌药制霉菌素和荧光增白剂敏感)与细胞壁的改变有关。在ERG1基因中发现一个单一的C1288G碱基变化,导致角鲨烯环氧酶(Erg1p)第430位的脯氨酸被丙氨酸取代,这被确定为特比萘芬抗性的唯一原因。ERG1基因中的这种新突变仅赋予Erg1p对特比萘芬的部分抗性,然而,即使是低水平的抗性也能使经特比萘芬处理的突变细胞在更长的培养期内维持足够的麦角固醇水平。角鲨烯积累对经特比萘芬处理的突变细胞生长没有干扰,这表明特比萘芬在酿酒酵母中的抗真菌作用可能主要与麦角固醇耗竭有关。

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