AbstractReconstitution of the 16kDa N-terminal domain of the peridinin–chlorophyll–protein, N-PCP, with mixtures of chlorophyll a (Chl a) and Chl b, resulted in 32kDa complexes containing two pigment clusters, each bound to one N-PCP. Besides homo-chlorophyllous complexes, hetero-chlorophyllous ones were obtained that contain Chl a in one pigment cluster, and Chl b in the other. Binding of Chl b is stronger than that of the native pigment, Chl a. Energy transfer from Chl b to Chl a is efficient, but there are only weak interactions between the two pigments. Individual homo- and hetero-chlorophyllous complexes were investigated by single molecule spectroscopy using excitation into the peridinin absorption band and scanning of the Chl fluores...
The peridinin-chlorophyll a-protein (PCP) of dinoflagellates is unique among the large variety of na...
The coding regions for the N-domain, and full length peridinin–chlorophyll a apoprotein (full length...
AbstractThe peridinin–chlorophyll a-protein (PCP) from dinoflagellates is a soluble light harvesting...
AbstractSingle molecule spectroscopy experiments are reported for native peridinin–chlorophyll a–pro...
Single molecule spectroscopy experiments are reported for native peridinin chlorophyll a protein (PC...
AbstractWe combine ensemble and single-molecule spectroscopy to gain insight into the energy transfe...
Single molecule spectroscopy experiments are reported for native peridinin-chlorophyll a-protein (PC...
The triplet state of the carotenoid peridinin, populated by triplet\u2013triplet energy transfer fro...
Low temperature, steady-state, optical spectroscopic methods were used to study the spectral feature...
AbstractWe use femtosecond transient absorption spectroscopy to study chlorophyll (Chl)-Chl energy t...
In vitro studies of the carotenoid peridinin, which is the primary pigment from the peridinin chloro...
The spectroscopic properties of peridinin in solution, and the efficiency and dynamics of energy tra...
AbstractThe triplet state of the carotenoid peridinin, populated by triplet–triplet energy transfer ...
Peridinin chlorophyll a protein (PCP) from Amphidinium carterae has been studied using absorbance (O...
We use femtosecond transient absorption spectroscopy to study chlorophyll (Chl)-Chl energy transfer ...
The peridinin-chlorophyll a-protein (PCP) of dinoflagellates is unique among the large variety of na...
The coding regions for the N-domain, and full length peridinin–chlorophyll a apoprotein (full length...
AbstractThe peridinin–chlorophyll a-protein (PCP) from dinoflagellates is a soluble light harvesting...
AbstractSingle molecule spectroscopy experiments are reported for native peridinin–chlorophyll a–pro...
Single molecule spectroscopy experiments are reported for native peridinin chlorophyll a protein (PC...
AbstractWe combine ensemble and single-molecule spectroscopy to gain insight into the energy transfe...
Single molecule spectroscopy experiments are reported for native peridinin-chlorophyll a-protein (PC...
The triplet state of the carotenoid peridinin, populated by triplet\u2013triplet energy transfer fro...
Low temperature, steady-state, optical spectroscopic methods were used to study the spectral feature...
AbstractWe use femtosecond transient absorption spectroscopy to study chlorophyll (Chl)-Chl energy t...
In vitro studies of the carotenoid peridinin, which is the primary pigment from the peridinin chloro...
The spectroscopic properties of peridinin in solution, and the efficiency and dynamics of energy tra...
AbstractThe triplet state of the carotenoid peridinin, populated by triplet–triplet energy transfer ...
Peridinin chlorophyll a protein (PCP) from Amphidinium carterae has been studied using absorbance (O...
We use femtosecond transient absorption spectroscopy to study chlorophyll (Chl)-Chl energy transfer ...
The peridinin-chlorophyll a-protein (PCP) of dinoflagellates is unique among the large variety of na...
The coding regions for the N-domain, and full length peridinin–chlorophyll a apoprotein (full length...
AbstractThe peridinin–chlorophyll a-protein (PCP) from dinoflagellates is a soluble light harvesting...