Barona-Gomez_2006_Microbiology_152_3355

Reference

Title : Multiple biosynthetic and uptake systems mediate siderophore-dependent iron acquisition in Streptomyces coelicolor A3(2) and Streptomyces ambofaciens ATCC 23877 - Barona-Gomez_2006_Microbiology_152_3355
Author(s) : Barona-Gomez F , Lautru S , Francou FX , Leblond P , Pernodet JL , Challis GL
Ref : Microbiology , 152 :3355 , 2006
Abstract :

Siderophore-mediated iron acquisition has been well studied in many bacterial pathogens because it contributes to virulence. In contrast, siderophore-mediated iron acquisition by saprophytic bacteria has received relatively little attention. The independent identification of the des and cch gene clusters that direct production of the tris-hydroxamate ferric iron-chelators desferrioxamine E and coelichelin, respectively, which could potentially act as siderophores in the saprophyte Streptomyces coelicolor A3(2), has recently been reported. Here it is shown that the des cluster also directs production of desferrioxamine B in S. coelicolor and that very similar des and cch clusters direct production of desferrioxamines E and B, and coelichelin, respectively, in Streptomyces ambofaciens ATCC 23877. Sequence analyses of the des and cch clusters suggest that components of ferric-siderophore uptake systems are also encoded within each cluster. The construction and analysis of a series of mutants of S. coelicolor lacking just biosynthetic genes or both the biosynthetic and siderophore uptake genes from the des and cch clusters demonstrated that coelichelin and desferrioxamines E and B all function as siderophores in this organism and that at least one of these metabolites is required for growth under defined conditions even in the presence of significant quantities of ferric iron. These experiments also demonstrated that a third siderophore uptake system must be present in S. coelicolor, in addition to the two encoded within the cch and des clusters, which show selectivity for coelichelin and desferrioxamine E, respectively. The ability of the S. coelicolor mutants to utilize a range of exogenous xenosiderophores for iron acquisition was also examined, showing that the third siderophore-iron transport system has broad specificity for tris-hydroxamate-containing siderophores. Together, these results define a complex system of multiple biosynthetic and uptake pathways for siderophore-mediated iron acquisition in S. coelicolor and S. ambofaciens.

PubMedSearch : Barona-Gomez_2006_Microbiology_152_3355
PubMedID: 17074905
Gene_locus related to this paper: stram-a0abw5 , stram-a0ac15 , stram-a0ac26 , stram-a0ac27 , stram-a0acp3 , stram-a0acq4 , stram-a0acx2.1 , stram-a0acx2.2 , stram-a0adx4 , stram-a0aeb0 , stram-q1rql3 , stram-q1rqp7 , stram-q1rqu8 , stram-q1rqw8 , stram-q1rr14 , stram-q1rr40 , stram-q1rr62 , stram-Q9KWX3 , strco-SCF11.06 , stram-a0acr7

Related information

Gene_locus stram-a0abw5    stram-a0ac15    stram-a0ac26    stram-a0ac27    stram-a0acp3    stram-a0acq4    stram-a0acx2.1    stram-a0acx2.2    stram-a0adx4    stram-a0aeb0    stram-q1rql3    stram-q1rqp7    stram-q1rqu8    stram-q1rqw8    stram-q1rr14    stram-q1rr40    stram-q1rr62    stram-Q9KWX3    strco-SCF11.06    stram-a0acr7

Citations formats

Barona-Gomez F, Lautru S, Francou FX, Leblond P, Pernodet JL, Challis GL (2006)
Multiple biosynthetic and uptake systems mediate siderophore-dependent iron acquisition in Streptomyces coelicolor A3(2) and Streptomyces ambofaciens ATCC 23877
Microbiology 152 :3355

Barona-Gomez F, Lautru S, Francou FX, Leblond P, Pernodet JL, Challis GL (2006)
Microbiology 152 :3355