Iron–sulfur clusters are ancient cofactors that play a fundamental role in metabolism and may have impacted the prebiotic chemistry that led to life. However, it is unclear whether iron–sulfur clusters could have been synthesized on prebiotic Earth. Dissolved iron on early Earth was predominantly in the reduced ferrous state, but ferrous ions alone cannot form polynuclear iron–sulfur clusters. Similarly, free sulfide may not have been readily available. Here we show that UV light drives the synthesis of [2Fe–2S] and [4Fe–4S] clusters through the photooxidation of ferrous ions and the photolysis of organic thiols. Iron–sulfur clusters coordinate to and are stabilized by a wide range of cysteine-containing peptides and the assembly of iron–su...
Prebiotic chemistry was likely mediated by metals, but how such prebiotic chemistry progressed into ...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
Iron sulfur (Fe–S) phases have been implicated in the emergence of life on early Earth due to their ...
Iron–sulfur clusters are ancient cofactors that play a fundamental role in metabolism and may have i...
Iron-sulfur (FeS) proteins are ancient and fundamental to life, being involved in electron transfer ...
International audienceIron–sulfur (Fe–S) clusters are ubiquitous cofactors essential for life. It is...
ABSTRACT: Iron−sulfur (Fe−S) cluster metalloproteins con-duct essential functions in nearly all cont...
Based on UV-Vis, NMR, and EPR spectroscopies and DFT and molecular dynamics calculations, a model pr...
Iron–sulfur (Fe–S) cluster metalloproteins conduct essential functions in nearly all contemporary fo...
The role of iron sulfide minerals for the terrestrial origin of life has been discussed over several...
AbstractIron–sulfur (Fe–S) clusters are ancient, ubiquitous cofactors composed of iron and inorganic...
The right ingredients: Novel biosynthetic pathways for iron–sulfur clusters (see figure) are being u...
Abstract[Fe4S4]- and [Fe3S4]-clusters are ubiquitous iron–sulfur motifs in biological systems. The [...
Iron and sulfur are indispensable elements of every living cell, but on their own these elements are...
Prebiotic chemistry was likely mediated by metals, but how such prebiotic chemistry progressed into ...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
Iron sulfur (Fe–S) phases have been implicated in the emergence of life on early Earth due to their ...
Iron–sulfur clusters are ancient cofactors that play a fundamental role in metabolism and may have i...
Iron-sulfur (FeS) proteins are ancient and fundamental to life, being involved in electron transfer ...
International audienceIron–sulfur (Fe–S) clusters are ubiquitous cofactors essential for life. It is...
ABSTRACT: Iron−sulfur (Fe−S) cluster metalloproteins con-duct essential functions in nearly all cont...
Based on UV-Vis, NMR, and EPR spectroscopies and DFT and molecular dynamics calculations, a model pr...
Iron–sulfur (Fe–S) cluster metalloproteins conduct essential functions in nearly all contemporary fo...
The role of iron sulfide minerals for the terrestrial origin of life has been discussed over several...
AbstractIron–sulfur (Fe–S) clusters are ancient, ubiquitous cofactors composed of iron and inorganic...
The right ingredients: Novel biosynthetic pathways for iron–sulfur clusters (see figure) are being u...
Abstract[Fe4S4]- and [Fe3S4]-clusters are ubiquitous iron–sulfur motifs in biological systems. The [...
Iron and sulfur are indispensable elements of every living cell, but on their own these elements are...
Prebiotic chemistry was likely mediated by metals, but how such prebiotic chemistry progressed into ...
International audienceIron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorgan...
Iron sulfur (Fe–S) phases have been implicated in the emergence of life on early Earth due to their ...