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酵母AP-1蛋白介导的镉耐受性需要存在一个编码ATP结合盒转运蛋白的基因YCF1。

Cadmium tolerance mediated by the yeast AP-1 protein requires the presence of an ATP-binding cassette transporter-encoding gene, YCF1.

作者信息

Wemmie J A, Szczypka M S, Thiele D J, Moye-Rowley W S

机构信息

Department of Physiology and Biophysics, University of Iowa, Iowa City 52242.

出版信息

J Biol Chem. 1994 Dec 23;269(51):32592-7.

PMID:7798263
Abstract

Elevations in gene dosage of the transcriptional regulatory protein yAP-1 in Saccharomyces cerevisiae can elicit pronounced phenotypic increases in tolerance of a variety of drugs including the toxic heavy metal cadmium. While a large elevation in cadmium tolerance occurs in response to overproduction of yAP-1, the target genes under yAP-1 control have not yet been identified that are responsible for this increase. We show here that the YCF1 gene, encoding a likely integral membrane protein, is required for yAP-1 to exert its normal effects on cadmium tolerance. Mutant strains of yeast that lack the YCF1 gene are hypersensitive to cadmium and this hypersensitivity is epistatic to yAP-1 overexpression. YCF1 mRNA levels and the expression of a YCF1-lacZ reporter construct positively correlates with changes in YAP1 gene dosage. A set of 5' truncation derivatives of the YCF1-lacZ fusion gene identified the region from -201 to +47 as being sufficient for the yAP-1-dependent increase in expression. DNase I footprinting using a probe from this segment of the YCF1 promoter showed that bacterially-produced yAP-1 protein was capable of binding a novel DNA element we have designated the yAP-1 response element. Insertion of the yAP-1 response element upstream of a CYC1-lacZ gene fusion led to the production of beta-galactosidase in a yAP-1-dependent fashion. These data establish that an important physiological target of yAP-1 transcriptional regulation is the YCF1 structural gene.

摘要

酿酒酵母中转录调节蛋白yAP-1的基因剂量增加,可显著提高其对包括有毒重金属镉在内的多种药物的耐受性。虽然yAP-1过量表达会使镉耐受性大幅提高,但尚未鉴定出yAP-1控制下负责这种耐受性增加的靶基因。我们在此表明,编码一种可能的整合膜蛋白的YCF1基因,是yAP-1对镉耐受性发挥正常作用所必需的。缺乏YCF1基因的酵母突变株对镉高度敏感,且这种超敏性对yAP-1过表达呈上位性。YCF1 mRNA水平以及YCF1 - lacZ报告构建体的表达与YAP1基因剂量的变化呈正相关。YCF1 - lacZ融合基因的一组5'截短衍生物确定,从 - 201到 + 47的区域足以实现yAP-1依赖的表达增加。使用来自YCF1启动子该片段的探针进行DNase I足迹分析表明,细菌产生的yAP-1蛋白能够结合一个我们命名为yAP-1反应元件的新型DNA元件。在CYC1 - lacZ基因融合上游插入yAP-1反应元件,导致以yAP-1依赖的方式产生β-半乳糖苷酶。这些数据表明,yAP-转录调控的一个重要生理靶标是YCF1结构基因。

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