Lowry C V, Zitomer R S
State University of New York, Albany 12222.
Mol Cell Biol. 1988 Nov;8(11):4651-8. doi: 10.1128/mcb.8.11.4651-4658.1988.
The ROX1 gene encodes a product implicated in the regulation of heme-repressed and heme-induced genes in Saccharomyces cerevisiae. The gene has been cloned and shown to code for a 1.4-kilobase transcript. The cloned gene was used to construct a null mutant to determine the role of ROX1 in regulating the expression of several heme-regulated genes. Constitutive expression of ANB1 (a heme-repressed gene) was observed in the null strain, indicating that ROX1 codes for a repressor or a facilitator of repression. Enhancement of expression of CYC7 in the null strain indicated that the ROX1 factor is required for repression of CYC7 to its normal low level of expression, consistent with evidence that CYC7 has a hybrid heme-induced, heme-repressed regulatory mechanism. The null mutation had only a slight negative effect on expression of the heme-induced genes CYC1 and tr-1 (a heme-induced homolog of ANB1), suggesting that the ROX1 factor is not directly involved in their regulation despite the existence of an unusual rox1 mutation (rox1-a1) causing constitutive expression of this group. The respiratory competence of the null mutant indicates that ROX1 is not a respiratory factor. ROX1 expression was found to be induced by heme, indicating that the heme repression of ANB1 and its family is the result of a cascade in which heme induces a repression factor which keeps the family of heme-repressed genes inactive during aerobic growth. The rox1-a1 allele had earlier been shown to cause constitutive expression of the family of heme-induced respiratory genes. This allele was found to cause constitutive expression of the ROX1 transcript itself, indicating that ROX1 is in the major heme-induced regulon.
ROX1基因编码一种产物,该产物与酿酒酵母中血红素抑制和血红素诱导基因的调控有关。该基因已被克隆,并显示编码一个1.4千碱基的转录本。利用克隆的基因构建了一个缺失突变体,以确定ROX1在调控几个血红素调控基因表达中的作用。在缺失菌株中观察到ANB1(一个血红素抑制基因)的组成型表达,这表明ROX1编码一种阻遏物或阻遏作用的促进因子。缺失菌株中CYC7表达的增强表明,ROX1因子是将CYC7抑制到其正常低表达水平所必需的,这与CYC7具有混合的血红素诱导、血红素抑制调控机制的证据一致。缺失突变对血红素诱导基因CYC1和tr-1(ANB1的血红素诱导同源物)的表达只有轻微的负面影响,这表明尽管存在一个导致该组基因组成型表达的异常rox1突变(rox1-a1),ROX1因子并不直接参与它们的调控。缺失突变体的呼吸能力表明ROX1不是一个呼吸因子。发现ROX1的表达受血红素诱导,这表明ANB1及其家族的血红素抑制是一个级联反应的结果,其中血红素诱导一个阻遏因子在有氧生长期间使血红素抑制基因家族保持无活性。rox1-a1等位基因早些时候已被证明会导致血红素诱导的呼吸基因家族的组成型表达。发现该等位基因会导致ROX1转录本本身的组成型表达,这表明ROX1在主要的血红素诱导调节子中。