Fisher S H, Rohrer K, Ferson A E
Department of Microbiology, Boston University School of Medicine, Massachusetts 02118, USA.
J Bacteriol. 1996 Jul;178(13):3779-84. doi: 10.1128/jb.178.13.3779-3784.1996.
Bacillus subtilis mutants deficient in amino acid repression of the histidine utilization (hut) operon were isolated by transposon mutagenesis. Genetic characterization of these mutants indicated that they most likely contained transposon insertions within the codVWXY operon. The codY gene is required for nutritional regulation of the dipeptide permease (dpp) operon. An examination of hut expression in a delta codY mutant demonstrated that amino acid repression exerted at the hutOA operator, which lies immediately downstream of the hut promoter, was defective in a delta codY mutant. The codY gene product was not required for amino acid regulation of either hut induction or the expression of proline oxidase, the first enzyme in proline degradation. This indicates that more than one mechanism of amino acid repression is present in B. subtilis. An examination of dpp and hut expression in cells during exponential growth in various media revealed that the level of CodY-dependent regulation appeared to be related to the growth rate of the culture.
通过转座子诱变分离出了枯草芽孢杆菌中组氨酸利用(hut)操纵子氨基酸阻遏缺陷型突变体。对这些突变体的遗传特征分析表明,它们很可能在codVWXY操纵子内含有转座子插入。codY基因是二肽通透酶(dpp)操纵子营养调控所必需的。对δcodY突变体中hut表达的检测表明,在hut启动子下游紧邻的hutOA操纵子处施加的氨基酸阻遏在δcodY突变体中存在缺陷。codY基因产物对于hut诱导的氨基酸调控或脯氨酸降解中的第一种酶脯氨酸氧化酶的表达并非必需。这表明枯草芽孢杆菌中存在不止一种氨基酸阻遏机制。对在各种培养基中指数生长的细胞中的dpp和hut表达进行检测发现,CodY依赖性调控水平似乎与培养物的生长速率有关。