Volkert M R, Hajec L I, Matijasevic Z, Fang F C, Prince R
Department of Molecular Genetics and Microbiology, University of Massachusetts Medical School, Worcester 01655.
J Bacteriol. 1994 Dec;176(24):7638-45. doi: 10.1128/jb.176.24.7638-7645.1994.
The Escherichia coli aidB gene is regulated by two different mechanisms, an ada-dependent pathway triggered by methyl damage to DNA and an ada-independent pathway triggered when cells are grown without aeration. In this report we describe our search for mutations affecting the ada-independent aidB induction pathway. The mutant strain identified carries two mutations affecting aidB expression. These mutations are named abrB (aidB regulator) and abrD. The abrB mutation is presently poorly characterized because of instability of the phenotype it imparts. The second mutation, abrD1, reduces the expression of aidB observed when aeration is ceased and oxygen becomes limiting. Genetic and phenotypic analysis of the abrD1 mutation demonstrates that it is an allele of rpoS. Thus, aidB is a member of the family of genes that are transcribed by a sigma S-directed RNA polymerase holoenzyme. Examination of aidB expression in an rpoS insertion mutant strain indicates that both rpoS13::Tn10 and abrD1 mutations reduce aidB expression under oxygen-limiting conditions that prevail in unaerated cultures, reduce aidB induction by acetate at a low pH, but have little or no effect on the ada-dependent alkylation induction of aidB.
大肠杆菌的aidB基因受两种不同机制调控,一种是由DNA甲基损伤触发的ada依赖途径,另一种是细胞在无氧条件下生长时触发的ada非依赖途径。在本报告中,我们描述了对影响ada非依赖型aidB诱导途径的突变的研究。鉴定出的突变菌株携带两个影响aidB表达的突变。这些突变被命名为abrB(aidB调节因子)和abrD。由于abrB突变所赋予的表型不稳定,目前对其特征了解甚少。第二个突变abrD1,降低了停止通气且氧气变得有限时观察到的aidB表达。对abrD1突变的遗传和表型分析表明它是rpoS的一个等位基因。因此,aidB是由σS导向的RNA聚合酶全酶转录的基因家族的一员。在rpoS插入突变菌株中对aidB表达的检测表明,rpoS13::Tn10和abrD1突变在未通气培养物中普遍存在的限氧条件下均降低了aidB表达,在低pH值时降低了乙酸对aidB的诱导作用,但对aidB的ada依赖型烷基化诱导作用几乎没有影响。