AbstractThe Fenna–Matthews–Olson protein (FMO) binds seven or eight bacteriochlorophyll a (BChl a) molecules and is an important model antenna system for understanding pigment-protein interactions and mechanistic aspects of photosynthetic light harvesting. FMO proteins of green sulfur bacteria (Chlorobiales) have been extensively studied using a wide range of spectroscopic and theoretical approaches because of their stability, the spectral resolution of their pigments, their water-soluble nature, and the availability of high-resolution structural data. We obtained new structural and spectroscopic insights by studying the FMO protein from the recently discovered, aerobic phototrophic acidobacterium, Candidatus Chloracidobacterium thermophilu...
AbstractTwo spectral forms of the peripheral light-harvesting complex (LH2) from the purple sulfur p...
AbstractThe kinetics of photoinduced absorbance changes in the 400-ns to 100-ms time range were stud...
Photosynthetic organisms harvest sunlight through antenna light-harvesting complexes. Light absorbed...
AbstractThe Fenna–Matthews–Olson protein (FMO) binds seven or eight bacteriochlorophyll a (BChl a) m...
The Fenna-Matthews-Olson: FMO) bacteriochlorophyll a protein has served as a model antenna system fo...
In green-sulfur bacteria sunlight is absorbed by antenna structures termed chlorosomes, and transfer...
We review the optical properties of the FMO complex as found by spectroscopic studies of the Qy band...
AbstractBacteriochlorophyll a is extracted from the reaction center complex and the Fenna-Mathews-Ol...
Femtosecond energy transfer processes in a bacteriochlorophyll a-protein antenna complex from the gr...
AbstractThe structure of the chlorosome baseplate protein CsmA from Chlorobium tepidum in a 1:1 chlo...
AbstractGreen sulfur bacteria possess a complex photosynthetic machinery. The dominant light harvest...
AbstractWe have demonstrated temperature-dependence of the steady-state fluorescence lineshape of th...
AbstractWe have studied energy transfer in chlorosomes of Chlorobium limicola UdG6040 containing a m...
The Fenna-Matthews-Olson (FMO) photosynthetic complex found in green sulfur bacteria has over the la...
AbstractEnergy transfers within the B808–866 BChl a antenna in chlorosome-membrane complexes from th...
AbstractTwo spectral forms of the peripheral light-harvesting complex (LH2) from the purple sulfur p...
AbstractThe kinetics of photoinduced absorbance changes in the 400-ns to 100-ms time range were stud...
Photosynthetic organisms harvest sunlight through antenna light-harvesting complexes. Light absorbed...
AbstractThe Fenna–Matthews–Olson protein (FMO) binds seven or eight bacteriochlorophyll a (BChl a) m...
The Fenna-Matthews-Olson: FMO) bacteriochlorophyll a protein has served as a model antenna system fo...
In green-sulfur bacteria sunlight is absorbed by antenna structures termed chlorosomes, and transfer...
We review the optical properties of the FMO complex as found by spectroscopic studies of the Qy band...
AbstractBacteriochlorophyll a is extracted from the reaction center complex and the Fenna-Mathews-Ol...
Femtosecond energy transfer processes in a bacteriochlorophyll a-protein antenna complex from the gr...
AbstractThe structure of the chlorosome baseplate protein CsmA from Chlorobium tepidum in a 1:1 chlo...
AbstractGreen sulfur bacteria possess a complex photosynthetic machinery. The dominant light harvest...
AbstractWe have demonstrated temperature-dependence of the steady-state fluorescence lineshape of th...
AbstractWe have studied energy transfer in chlorosomes of Chlorobium limicola UdG6040 containing a m...
The Fenna-Matthews-Olson (FMO) photosynthetic complex found in green sulfur bacteria has over the la...
AbstractEnergy transfers within the B808–866 BChl a antenna in chlorosome-membrane complexes from th...
AbstractTwo spectral forms of the peripheral light-harvesting complex (LH2) from the purple sulfur p...
AbstractThe kinetics of photoinduced absorbance changes in the 400-ns to 100-ms time range were stud...
Photosynthetic organisms harvest sunlight through antenna light-harvesting complexes. Light absorbed...