Mulvey M R, Switala J, Borys A, Loewen P C
Department of Microbiology, University of Manitoba, Winnipeg, Canada.
J Bacteriol. 1990 Dec;172(12):6713-20. doi: 10.1128/jb.172.12.6713-6720.1990.
Fusion plasmids with lacZ under the control of the katE (encoding catalase or hydroperoxidase HPII) and katF (encoding a sigma factor-like protein required for katE expression) promoters were constructed. Expression from both katE and katF promoters was low in rich medium but elevated in poor medium during log-phase growth. Furthermore, the slowdown in growth as cells entered the stationary phase in rich medium, a result of carbon source depletion, was associated with an increase in katE and katF expression. A simple reduction in the carbon source level as the cells entered the stationary phase was not responsible for the increase in expression, because transferring the culture to a medium with no glucose did not induce expression from either promoter. Spent rich medium from stationary-phase cells was capable of inducing expression, as were simple aromatic acids such as benzoate, o-hydroxybenzoate, and p-aminobenzoate added to new medium. Anaerobiosis did not cause an increase in expression, nor did it significantly change the pattern of expression. Regardless of the medium, katF expression was always turned on before or coincidently with katE expression; in the presence of benzoate katF was fully induced, whereas katE was only partially induced, suggesting that a factor in addition to KatF protein was involved in katE expression. During prolonged aerobic incubation, cells lacking katF died off more rapidly than did cells lacking either katE or katG.
构建了融合质粒,其中lacZ受katE(编码过氧化氢酶或氢过氧化物酶HPII)和katF(编码katE表达所需的类sigma因子蛋白)启动子的控制。在对数期生长期间,katE和katF启动子的表达在丰富培养基中较低,但在贫瘠培养基中升高。此外,在丰富培养基中随着细胞进入稳定期生长放缓(这是碳源耗尽的结果)与katE和katF表达的增加有关。细胞进入稳定期时碳源水平的简单降低并不是表达增加的原因,因为将培养物转移到不含葡萄糖的培养基中不会诱导任何一个启动子的表达。来自稳定期细胞的用过的丰富培养基能够诱导表达,添加到新培养基中的简单芳香酸如苯甲酸盐、邻羟基苯甲酸盐和对氨基苯甲酸盐也能诱导表达。厌氧状态不会导致表达增加,也不会显著改变表达模式。无论培养基如何,katF的表达总是在katE表达之前或同时开启;在苯甲酸盐存在的情况下,katF被完全诱导,而katE仅被部分诱导,这表明除了KatF蛋白之外,还有一个因子参与katE的表达。在长时间的需氧培养期间,缺乏katF的细胞比缺乏katE或katG的细胞死亡得更快。