CNRS, UMR7242, UMR7242, ESBS, University of Strasbourg, Bld Sébastien Brant, 67412, Illkirch, Strasbourg, France.
UMR7242, ESBS, University of Strasbourg, Bld Sébastien Brant, 67412, Illkirch, Strasbourg, France.
Sci Rep. 2024 Aug 13;14(1):18795. doi: 10.1038/s41598-024-69152-6.
Siderophores are specialized molecules produced by bacteria and fungi to scavenge iron, a crucial nutrient for growth and metabolism. Catecholate-type siderophores are mainly produced by bacteria, while hydroxamates are mostly from fungi. This study investigates the capacity of nine hydroxamate-type siderophores from fungi and Streptomyces to facilitate iron acquisition by the human pathogen Pseudomonas aeruginosa. Growth assays under iron limitation and Fe incorporation tests showed that all nine siderophores promoted bacterial growth and iron transport. The study also aimed to identify the TonB-dependent transporters (TBDTs) involved in iron import by these siderophores. Using mutant strains lacking specific TBDT genes, it was found that iron is imported into P. aeruginosa cells by FpvB for coprogen, triacetylfusarinine, fusigen, ferrirhodin, and ferrirubin. Iron complexed by desferioxamine G is transported by FpvB and FoxA, ferricrocin-Fe and ferrichrycin-Fe by FpvB and FiuA, and rhodotoluric acid-Fe by FpvB, FiuA, and another unidentified TBDT. These findings highlight the effectiveness of hydroxamate-type siderophores in iron transport into P. aeruginosa and provide insights into the complex molecular mechanisms involved, which are important for understanding microbial interactions and ecological balance.
铁载体是细菌和真菌产生的专门分子,用于掠夺铁,铁是生长和代谢的关键营养物质。儿茶酚型铁载体主要由细菌产生,而羟肟酸则主要来自真菌。本研究调查了来自真菌和链霉菌的 9 种羟肟酸型铁载体促进人类病原体铜绿假单胞菌获取铁的能力。在缺铁条件下的生长测定和 Fe 掺入试验表明,所有 9 种铁载体都促进了细菌的生长和铁的转运。该研究还旨在确定这些铁载体参与铁内运的 TonB 依赖性转运体(TBDT)。使用缺乏特定 TBDT 基因的突变株,发现铁通过 FpvB 进入铜绿假单胞菌细胞,用于 coprogen、三乙酰fusarinine、fusigen、ferrirhodin 和 ferrirubin。与去铁胺 G 络合的铁由 FpvB 和 FoxA 转运,ferricrocin-Fe 和 ferrichrycin-Fe 由 FpvB 和 FiuA 转运,rhodotoluric acid-Fe 由 FpvB、FiuA 和另一种未鉴定的 TBDT 转运。这些发现强调了羟肟酸型铁载体在将铁转运到铜绿假单胞菌中的有效性,并深入了解了涉及的复杂分子机制,这对于理解微生物相互作用和生态平衡非常重要。