Narberhaus F, Käser R, Nocker A, Hennecke H
Mikrobiologisches Institut, Eidgenössische Technische Hochschule, ETH-Zentrum, Zürich, Switzerland.
Mol Microbiol. 1998 Apr;28(2):315-23. doi: 10.1046/j.1365-2958.1998.00794.x.
The hspArpoH1 and hspBCdegP heat shock operons of Bradyrhizobium japonicum are preceded by a novel, conserved DNA element of approximately 100 bp, which is responsible for the temperature-regulated transcription of their sigma70-type promoters. We designated this motif ROSE for repression of heat shock gene expression and found additional ROSE elements upstream of two newly identified heat shock operons. A critical core region in the hspA-associated ROSE1 was defined by introducing insertions or deletions. While four mutants retained the ability to repress transcription of the hspArpoH1 operon, five deletion mutants produced elevated hspA mRNA levels under low-temperature growth conditions. Derepression was confirmed by increased RpoH1 levels in non-heat-shocked cells from one of these mutants and by strains that contained a translational hspA-lacZ fusion associated with mutated ROSE1 elements. The hspArpoH1 operon was efficiently transcribed in vitro, and a deletion of ROSE1 did not impair this activity. Gel retardation experiments demonstrated that a protein in non-heat-shocked cells specifically binds to the intact ROSE1 element but not to a mutated element lacking the core region. Taken together, these results indicate that a central region of ROSE serves as a binding site for a repressor protein under standard growth conditions in order to prevent the undesired transcription of heat shock genes.
日本慢生根瘤菌的hspArpoH1和hspBCdegP热休克操纵子之前有一个约100 bp的新型保守DNA元件,该元件负责其σ70型启动子的温度调节转录。我们将这个基序命名为ROSE,即热休克基因表达抑制元件,并在两个新鉴定的热休克操纵子上游发现了其他ROSE元件。通过引入插入或缺失来定义与hspA相关的ROSE1中的关键核心区域。虽然四个突变体保留了抑制hspArpoH1操纵子转录的能力,但五个缺失突变体在低温生长条件下产生了升高的hspA mRNA水平。其中一个突变体的非热休克细胞中RpoH1水平增加,以及含有与突变ROSE1元件相关的翻译hspA-lacZ融合体的菌株证实了解抑制作用。hspArpoH1操纵子在体外能有效转录,ROSE1的缺失并不损害这种活性。凝胶阻滞实验表明,非热休克细胞中的一种蛋白质特异性结合完整的ROSE1元件,而不结合缺乏核心区域的突变元件。综上所述,这些结果表明,在标准生长条件下,ROSE的一个中心区域作为阻遏蛋白的结合位点,以防止热休克基因的不必要转录。