Department of Botany and Plant Pathology, Oregon State University, 2082 Cordley Hall, Corvallis, OR 97331, USA.
Biometals. 2011 Apr;24(2):193-213. doi: 10.1007/s10534-010-9385-2. Epub 2010 Nov 16.
The soil bacterium Pseudomonas fluorescens Pf-5 produces two siderophores, a pyoverdine and enantio-pyochelin, and its proteome includes 45 TonB-dependent outer-membrane proteins, which commonly function in uptake of siderophores and other substrates from the environment. The 45 proteins share the conserved β-barrel and plug domains of TonB-dependent proteins but only 18 of them have an N-terminal signaling domain characteristic of TonB-dependent transducers (TBDTs), which participate in cell-surface signaling systems. Phylogenetic analyses of the 18 TBDTs and 27 TonB-dependent receptors (TBDRs), which lack the N-terminal signaling domain, suggest a complex evolutionary history including horizontal transfer among different microbial lineages. Putative functions were assigned to certain TBDRs and TBDTs in clades including well-characterized orthologs from other Pseudomonas spp. A mutant of Pf-5 with deletions in pyoverdine and enantio-pyochelin biosynthesis genes was constructed and characterized for iron-limited growth and utilization of a spectrum of siderophores. The mutant could utilize as iron sources a large number of pyoverdines with diverse structures as well as ferric citrate, heme, and the siderophores ferrichrome, ferrioxamine B, enterobactin, and aerobactin. The diversity and complexity of the TBDTs and TBDRs with roles in iron uptake clearly indicate the importance of iron in the fitness and survival of Pf-5 in the environment.
土壤细菌荧光假单胞菌 Pf-5 产生两种铁载体,即绿脓菌素和对映体-吡咯烷酮羟酸,其蛋白质组包括 45 种 TonB 依赖性外膜蛋白,这些蛋白通常在从环境中摄取铁载体和其他底物方面发挥作用。这 45 种蛋白共享 TonB 依赖性蛋白的保守β桶和塞子结构域,但只有其中 18 种具有 TonB 依赖性转导蛋白(TBDT)的特征性 N 端信号结构域,该结构域参与细胞表面信号系统。对 18 种 TBDT 和 27 种 TonB 依赖性受体(TBDR)的系统发育分析,这些受体缺乏 N 端信号结构域,表明包括不同微生物谱系之间的水平转移在内的复杂进化历史。在包括其他假单胞菌属的特征性同源物在内的进化枝中,对某些 TBDR 和 TBDT 进行了推定功能分配。构建并表征了 Pf-5 的突变体,该突变体缺失了绿脓菌素和对映体-吡咯烷酮羟酸生物合成基因,用于铁限制生长和利用一系列铁载体。该突变体可以将大量具有不同结构的绿脓菌素以及柠檬酸铁、血红素、铁载体费乐酮、铁氧胺 B、enterobactin 和 aerobactin 用作铁源。在铁摄取中起作用的 TBDT 和 TBDR 的多样性和复杂性清楚地表明,铁在 Pf-5 在环境中的适应性和生存能力中具有重要性。