Proteins achieve efficient energy storage and conversion through electron transfer along a series of redox cofactors. Multiheme cytochromes are notable examples. These proteins transfer electrons over distance scales of several nanometers to >10 μm and in so doing they couple cellular metabolism with extracellular redox partners including electrodes. Here, we report pump-probe spectroscopy that provides a direct measure of the intrinsic rates of heme-heme electron transfer in this fascinating class of proteins. Our study took advantage of a spectrally unique His/Met-ligated heme introduced at a defined site within the decaheme extracellular MtrC protein of Shewanella oneidensis We observed rates of heme-to-heme electron transfer on the orde...
AbstractElectron transfers in photosynthesis and respiration commonly occur between metal-containing...
Multi-heme cytochrome c (CytC) proteins are key for transferring electrons out of cells, to enable i...
Heme containing proteins are involved in a broad range of cellular functions, from oxygen sensing an...
Proteins achieve efficient energy storage and conversion through electron transfer along a series of...
Proteins achieve efficient energy storage and conversion through electron transfer along a series of...
Proteins achieve efficient energy storage and conversion through electron transfer along a series of...
Multiheme cytochromes attract much attention for their electron transport properties. These proteins...
Multi-heme cytochromes are employed by a range of microorganisms to transport electrons over distanc...
Microbial nanowires are fascinating biological structures that allow bacteria to transport electrons...
Microbial nanowires are fascinating biological structures that allow bacteria to transport electrons...
Certain bacteria possess the remarkable ability to respire on extracellular solid metal oxides, whic...
The bacterium Shewanella oneidensis has evolved a sophisticated electron transfer (ET) machinery to ...
Multi-heme cytochromes (MHCs) are fascinating proteins used by bacterial organisms to shuttle electr...
Electron-transfer (ET) reactions are key steps in a diverse array of biological transformations rang...
Distant heme-Ru electronic couplings have been extracted from intramolecular electron-transfer rates...
AbstractElectron transfers in photosynthesis and respiration commonly occur between metal-containing...
Multi-heme cytochrome c (CytC) proteins are key for transferring electrons out of cells, to enable i...
Heme containing proteins are involved in a broad range of cellular functions, from oxygen sensing an...
Proteins achieve efficient energy storage and conversion through electron transfer along a series of...
Proteins achieve efficient energy storage and conversion through electron transfer along a series of...
Proteins achieve efficient energy storage and conversion through electron transfer along a series of...
Multiheme cytochromes attract much attention for their electron transport properties. These proteins...
Multi-heme cytochromes are employed by a range of microorganisms to transport electrons over distanc...
Microbial nanowires are fascinating biological structures that allow bacteria to transport electrons...
Microbial nanowires are fascinating biological structures that allow bacteria to transport electrons...
Certain bacteria possess the remarkable ability to respire on extracellular solid metal oxides, whic...
The bacterium Shewanella oneidensis has evolved a sophisticated electron transfer (ET) machinery to ...
Multi-heme cytochromes (MHCs) are fascinating proteins used by bacterial organisms to shuttle electr...
Electron-transfer (ET) reactions are key steps in a diverse array of biological transformations rang...
Distant heme-Ru electronic couplings have been extracted from intramolecular electron-transfer rates...
AbstractElectron transfers in photosynthesis and respiration commonly occur between metal-containing...
Multi-heme cytochrome c (CytC) proteins are key for transferring electrons out of cells, to enable i...
Heme containing proteins are involved in a broad range of cellular functions, from oxygen sensing an...