Ghysels Bart, Dieu Bui Thi Min, Beatson Scott A, Pirnay Jean-Paul, Ochsner Urs A, Vasil Michael L, Cornelis Pierre
Flanders Interuniversity Institute of Biotechnology (VIB6), Laboratory of Microbial Interactions, Vrije Universiteit Brussel, Building E, room 6·6, Pleinlaan 2, B-1050 Brussels, Belgium.
Institute for Biomedical Research, Medical School, University of Birmingham, Birmingham B15 2TT, United Kingdom.
Microbiology (Reading). 2004 Jun;150(Pt 6):1671-1680. doi: 10.1099/mic.0.27035-0.
Under conditions of iron limitation, Pseudomonas aeruginosa secretes a high-affinity siderophore pyoverdine to scavenge Fe(III) in the extracellular environment and shuttle it into the cell. Uptake of the pyoverdine-Fe(III) complex is mediated by a specific outer-membrane receptor protein, FpvA (ferripyoverdine receptor). Three P. aeruginosa siderovars can be distinguished, each producing a different pyoverdine (type I-III) and a cognate FpvA receptor. Growth of an fpvA mutant of P. aeruginosa PAO1 (type I) under iron-limiting conditions can still be stimulated by its cognate pyoverdine, suggesting the presence of an alternative uptake route for type I ferripyoverdine. In silico analysis of the PAO1 genome revealed that the product of gene PA4168 has a high similarity with FpvA. Inactivation of PA4168 (termed fpvB) in an fpvA mutant totally abolished the capacity to utilize type I pyoverdine. The expression of fpvB is induced by iron limitation in Casamino acids (CAA) and in M9-glucose medium, but, unlike fpvA, not in a complex deferrated medium containing glycerol as carbon source. The fpvB gene was also detected in other P. aeruginosa isolates, including strains producing type II and type III pyoverdines. Inactivation of the fpvB homologues in these strains impaired their capacity to utilize type I ferripyoverdine as a source of iron. Accordingly, introduction of fpvB in trans restored the capacity to utilize type I ferripyoverdine.
在铁限制条件下,铜绿假单胞菌分泌一种高亲和力的铁载体绿脓菌素,以清除细胞外环境中的Fe(III)并将其转运到细胞内。绿脓菌素-Fe(III)复合物的摄取由一种特定的外膜受体蛋白FpvA(铁绿脓菌素受体)介导。铜绿假单胞菌可分为三个菌系,每个菌系产生不同的绿脓菌素(I-III型)和同源的FpvA受体。铜绿假单胞菌PAO1(I型)的fpvA突变体在铁限制条件下的生长仍可被其同源绿脓菌素刺激,这表明存在I型铁绿脓菌素的替代摄取途径。对PAO1基因组的计算机分析表明,基因PA4168的产物与FpvA具有高度相似性。在fpvA突变体中使PA4168(称为fpvB)失活完全消除了利用I型绿脓菌素的能力。fpvB的表达在酪蛋白氨基酸(CAA)和M9-葡萄糖培养基中受铁限制诱导,但与fpvA不同的是,在含有甘油作为碳源的复杂去铁培养基中不诱导。在其他铜绿假单胞菌分离株中也检测到了fpvB基因,包括产生II型和III型绿脓菌素的菌株。这些菌株中fpvB同源物的失活损害了它们利用I型铁绿脓菌素作为铁源的能力。因此,通过转导引入fpvB恢复了利用I型铁绿脓菌素的能力。