AbstractAmong the ultimate goals of protein physics, the complete, experimental description of the energy paths leading to protein conformational changes remains a challenge. Single protein fluorescence spectroscopy constitutes an approach of choice for addressing protein dynamics, and, among naturally fluorescing proteins, light-harvesting (LH) proteins from purple bacteria constitute an ideal object for such a study. LHs bind bacteriochlorophyll a molecules, which confer on them a high intrinsic fluorescence yield. Moreover, the electronic properties of these pigment-proteins result from the strong excitonic coupling between their bound bacteriochlorophyll a molecules in combination with the large energetic disorder due to slow fluctuatio...
This work discusses the protein conformational complexity of the B800–850 LH2 complexes from the pur...
AbstractSingle-molecule spectroscopy was employed to elucidate the fluorescence spectral heterogenei...
ABSTRACT: We have investigated the energy landscape of the bacterial photosynthetic peripheral light...
Abstract Among the ultimate goals of protein physics, the complete, experimental description of the ...
International audienceAmong the ultimate goals of protein physics, the complete, experimental descri...
AbstractAmong the ultimate goals of protein physics, the complete, experimental description of the e...
We have employed the technique of single-molecule fluorescence microspectroscopy to investigate the ...
The fluorescence emission spectrum of single peripheral light-harvesting (LH2) complexes of the phot...
Photosynthetic organisms flourish under low light intensities by converting photoenergy to chemical ...
We have investigated the energy landscape of the bacterial photosynthetic peripheral light-harvestin...
AbstractThe bacterial (Rhodopseudomonas acidophila) photosynthetic peripheral light-harvesting compl...
Photosynthetic organisms use pigment–protein complexes to capture the sunlight that powers most lif...
Single-molecule spectroscopy was employed to elucidate the fluorescence spectral heterogeneity and d...
Understanding the photophysics of fluorescent proteins is essential for accurate interpretation of t...
As the electronic energies of the chromophores in a pigment-protein complex are imposed by the geome...
This work discusses the protein conformational complexity of the B800–850 LH2 complexes from the pur...
AbstractSingle-molecule spectroscopy was employed to elucidate the fluorescence spectral heterogenei...
ABSTRACT: We have investigated the energy landscape of the bacterial photosynthetic peripheral light...
Abstract Among the ultimate goals of protein physics, the complete, experimental description of the ...
International audienceAmong the ultimate goals of protein physics, the complete, experimental descri...
AbstractAmong the ultimate goals of protein physics, the complete, experimental description of the e...
We have employed the technique of single-molecule fluorescence microspectroscopy to investigate the ...
The fluorescence emission spectrum of single peripheral light-harvesting (LH2) complexes of the phot...
Photosynthetic organisms flourish under low light intensities by converting photoenergy to chemical ...
We have investigated the energy landscape of the bacterial photosynthetic peripheral light-harvestin...
AbstractThe bacterial (Rhodopseudomonas acidophila) photosynthetic peripheral light-harvesting compl...
Photosynthetic organisms use pigment–protein complexes to capture the sunlight that powers most lif...
Single-molecule spectroscopy was employed to elucidate the fluorescence spectral heterogeneity and d...
Understanding the photophysics of fluorescent proteins is essential for accurate interpretation of t...
As the electronic energies of the chromophores in a pigment-protein complex are imposed by the geome...
This work discusses the protein conformational complexity of the B800–850 LH2 complexes from the pur...
AbstractSingle-molecule spectroscopy was employed to elucidate the fluorescence spectral heterogenei...
ABSTRACT: We have investigated the energy landscape of the bacterial photosynthetic peripheral light...