Macfadyen L P, Ma C, Redfield R J
Department of Zoology, University of British Columbia, Vancouver, British Columbia, Canada.
J Bacteriol. 1998 Sep;180(17):4401-5. doi: 10.1128/JB.180.17.4401-4405.1998.
Changes in intracellular 3',5' cyclic AMP (cAMP) concentration regulate the development of natural competence in Haemophilus influenzae. In Escherichia coli, cAMP levels are modulated by a cAMP phosphodiesterase encoded by the cpdA gene. We have used several approaches to demonstrate that the homologous icc gene of H. influenzae encodes a functional cAMP phosphodiesterase and that this gene limits intracellular cAMP and thereby influences competence and other cAMP-dependent processes. In E. coli, expression of cloned icc reduced both cAMP-dependent sugar fermentation and beta-galactosidase expression, as has been shown for cpdA. In H. influenzae, an icc null mutation increased cAMP-dependent sugar fermentation and competence development in strains where these processes are limited by mutations reducing cAMP synthesis. When endogenous production of cAMP was eliminated by a cya mutation, an icc strain was 10,000-fold more sensitive to exogenous cAMP than an icc+ strain. The icc strain showed moderately elevated competence under noninducing conditions, as expected, but had subnormal competence increases at onset of stationary phase in rich medium, and on transfer to a nutrient-limited medium, suggesting that excessive cAMP may interfere with induction. Consistent with this finding, a cya strain cultured in 1 mM cAMP failed to develop maximal competence on transfer to inducing conditions. Thus, by limiting cAMP levels, the H. influenzae cAMP phosphodiesterase may coordinate its responses to nutritional stress, ensuring optimal competence development.
细胞内3',5'-环磷酸腺苷(cAMP)浓度的变化调节流感嗜血杆菌自然感受态的发育。在大肠杆菌中,cAMP水平由cpdA基因编码的一种cAMP磷酸二酯酶调节。我们采用了多种方法来证明流感嗜血杆菌的同源icc基因编码一种功能性cAMP磷酸二酯酶,并且该基因限制细胞内cAMP,从而影响感受态及其他cAMP依赖的过程。在大肠杆菌中,克隆的icc的表达降低了cAMP依赖的糖发酵和β-半乳糖苷酶的表达,正如cpdA所显示的那样。在流感嗜血杆菌中,icc缺失突变增加了cAMP依赖的糖发酵和感受态发育,在这些过程因cAMP合成减少的突变而受到限制的菌株中。当通过cya突变消除cAMP的内源性产生时,icc菌株对外源cAMP的敏感性比icc+菌株高10000倍。正如预期的那样,icc菌株在非诱导条件下表现出适度升高的感受态,但在丰富培养基中进入稳定期时以及转移到营养限制培养基时,感受态增加低于正常水平,这表明过量的cAMP可能会干扰诱导。与这一发现一致,在1 mM cAMP中培养的cya菌株在转移到诱导条件下时未能发展出最大感受态。因此,通过限制cAMP水平,流感嗜血杆菌的cAMP磷酸二酯酶可能协调其对营养应激的反应,确保最佳的感受态发育。