Abstract Background Iron is essential for bacterial survival. Bacterial siderophores are small molecules with unmatched capacity to scavenge iron from proteins and the extracellular milieu, where it mostly occurs as insoluble Fe3+. Siderophores chelate Fe3+ for uptake into the cell, where it is reduced to soluble Fe2+. Siderophores are key molecules in low soluble iron conditions. The ability of bacteria to synthesize proprietary siderophores may have increased bacterial evolutionary fitness; one way that bacteria diversify siderophore structure is by incorporating different polyamine backbones while maintaining the catechol moieties. Results ...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
Iron is essential for bacterial survival, and most bacteria capture iron by producing siderophores. ...
Bacterial genomes are rife with orphan biosynthetic gene clusters (BGCs) associated with secondary m...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
Interrogation of the evolutionary history underlying the remarkable structures and biological activi...
Studying the evolutionary history underlying the remarkable structures and biological activities of ...
ABSTRACT: Interrogation of the evolutionary history underlying the remarkable structures and biologi...
Studying the evolutionary history underlying the remarkable structures and biological activities of ...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
Iron is essential for bacterial survival, and most bacteria capture iron by producing siderophores. ...
Bacterial genomes are rife with orphan biosynthetic gene clusters (BGCs) associated with secondary m...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
BACKGROUND: Iron is essential for bacterial survival. Bacterial siderophores are small molecules wit...
Interrogation of the evolutionary history underlying the remarkable structures and biological activi...
Studying the evolutionary history underlying the remarkable structures and biological activities of ...
ABSTRACT: Interrogation of the evolutionary history underlying the remarkable structures and biologi...
Studying the evolutionary history underlying the remarkable structures and biological activities of ...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
Iron is required for growth of nearly all microorganisms. While iron is the fourth most abundant ele...
Iron is essential for bacterial survival, and most bacteria capture iron by producing siderophores. ...
Bacterial genomes are rife with orphan biosynthetic gene clusters (BGCs) associated with secondary m...