Frangipani Emanuela, Slaveykova Vera I, Reimmann Cornelia, Haas Dieter
Département de Microbiologie Fondamentale, Université de Lausanne, Bâtiment Biophore, CH-1015 Lausanne, Switzerland.
J Bacteriol. 2008 Oct;190(20):6706-17. doi: 10.1128/JB.00450-08. Epub 2008 Aug 15.
Restricted bioavailability of copper in certain environments can interfere with cellular respiration because copper is an essential cofactor of most terminal oxidases. The global response of the metabolically versatile bacterium and opportunistic pathogen Pseudomonas aeruginosa to copper limitation was assessed under aerobic conditions. Expression of cioAB (encoding an alternative, copper-independent, cyanide-resistant ubiquinol oxidase) was upregulated, whereas numerous iron uptake functions (including the siderophores pyoverdine and pyochelin) were expressed at reduced levels, presumably reflecting a lower demand for iron by respiratory enzymes. Wild-type P. aeruginosa was able to grow aerobically in a defined glucose medium depleted of copper, whereas a cioAB mutant did not grow. Thus, P. aeruginosa relies on the CioAB enzyme to cope with severe copper deprivation. A quadruple cyo cco1 cco2 cox mutant, which was deleted for all known heme-copper terminal oxidases of P. aeruginosa, grew aerobically, albeit more slowly than did the wild type, indicating that the CioAB enzyme is capable of energy conservation. However, the expression of a cioA'-'lacZ fusion was less dependent on the copper status in the quadruple mutant than in the wild type, suggesting that copper availability might affect cioAB expression indirectly, via the function of the heme-copper oxidases.
在某些环境中,铜的生物利用度受限会干扰细胞呼吸,因为铜是大多数末端氧化酶的必需辅因子。在有氧条件下,评估了代谢多样的细菌兼机会致病菌铜绿假单胞菌对铜限制的全局反应。cioAB(编码一种替代性的、不依赖铜的、抗氰泛醇氧化酶)的表达上调,而许多铁摄取功能(包括铁载体绿脓菌素和焦铜素)的表达水平降低,这可能反映了呼吸酶对铁的需求较低。野生型铜绿假单胞菌能够在缺乏铜的限定葡萄糖培养基中进行有氧生长,而cioAB突变体则不能生长。因此,铜绿假单胞菌依靠CioAB酶来应对严重的铜缺乏。一个四重cyo cco1 cco2 cox突变体,其缺失了铜绿假单胞菌所有已知的血红素-铜末端氧化酶,能够进行有氧生长,尽管比野生型生长得慢,这表明CioAB酶能够进行能量守恒。然而,cioA'-'lacZ融合蛋白的表达在四重突变体中比在野生型中对铜状态的依赖性更小,这表明铜的可利用性可能通过血红素-铜氧化酶的功能间接影响cioAB的表达。