Iron is an essential, yet often limiting element for the growth of many organisms. In response to iron limitation, fungi have developed siderophores that provide a high-affinity iron uptake system and safe intracellular storage and transport mechanisms to gain a competitive advantage. Here, we discuss the function of siderophores in relation to fungal iron uptake mechanisms and their importance for coexistence with host organisms. The chemical nature of the major groups of siderophores and their regulation is described along with the function and architecture of the large multi-domain enzymes responsible for siderophore synthesis, namely the non-ribosomal peptide synthetases (NRPSs). Finally, we present the most recent advances in our under...
Three non-ribosomal peptide synthetase genes, termed sidD, sidC and sidE, have been identified in As...
The pathogenesis of infections caused by Scedosporium species is still poorly understood. However, t...
Siderophores are high-affinity ferric iron chelators biosynthesised and excreted by most microorgani...
Iron acquisition is essential for growth. In pathogenic Mucorales fungi, reductive iron assimilation...
Siderophores are low molecular weight, iron-chelating ligands produced by nearly all microorganisms....
Siderophores are low molecular weight, iron-chelating ligands produced by nearly all microorganisms....
<p>Iron is required for microbial growth and proliferation. To survive in low-iron environments, som...
Siderophores play a vital role in the viability of fungi and are essential for the virulence of many...
A nonribosomal peptide synthetase (NRPS) in Schizosaccharomyces pombe, which possesses an unusual st...
A nonribosomal peptide synthetase (NRPS) in Schizosaccharomyces pombe, which possesses an unusual st...
Siderophores play a vital role in the viability of fungi and are essential for the virulence of many...
The biosynthesis of the microbial small molecule iron scavengers known as siderophores has been of i...
Three non-ribosomal peptide synthetase genes, termed sidD, sidC and sidE, have been identified in As...
The biosynthesis of the microbial small molecule iron scavengers known as siderophores has been of i...
Three non-ribosomal peptide synthetase genes, termed sidD, sidC and sidE, have been identified in As...
Three non-ribosomal peptide synthetase genes, termed sidD, sidC and sidE, have been identified in As...
The pathogenesis of infections caused by Scedosporium species is still poorly understood. However, t...
Siderophores are high-affinity ferric iron chelators biosynthesised and excreted by most microorgani...
Iron acquisition is essential for growth. In pathogenic Mucorales fungi, reductive iron assimilation...
Siderophores are low molecular weight, iron-chelating ligands produced by nearly all microorganisms....
Siderophores are low molecular weight, iron-chelating ligands produced by nearly all microorganisms....
<p>Iron is required for microbial growth and proliferation. To survive in low-iron environments, som...
Siderophores play a vital role in the viability of fungi and are essential for the virulence of many...
A nonribosomal peptide synthetase (NRPS) in Schizosaccharomyces pombe, which possesses an unusual st...
A nonribosomal peptide synthetase (NRPS) in Schizosaccharomyces pombe, which possesses an unusual st...
Siderophores play a vital role in the viability of fungi and are essential for the virulence of many...
The biosynthesis of the microbial small molecule iron scavengers known as siderophores has been of i...
Three non-ribosomal peptide synthetase genes, termed sidD, sidC and sidE, have been identified in As...
The biosynthesis of the microbial small molecule iron scavengers known as siderophores has been of i...
Three non-ribosomal peptide synthetase genes, termed sidD, sidC and sidE, have been identified in As...
Three non-ribosomal peptide synthetase genes, termed sidD, sidC and sidE, have been identified in As...
The pathogenesis of infections caused by Scedosporium species is still poorly understood. However, t...
Siderophores are high-affinity ferric iron chelators biosynthesised and excreted by most microorgani...