Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chlorophyll chromophores. Each of the four Lhca1 to -4 subunits exhibits a specific fluorescence emission spectrum, peaking at 688, 701, 725, and 733 nm, respectively. Recent analysis revealed the role of chlorophyll-chlorophyll interactions of the red forms in Lhca3 and Lhca4, whereas the basis for the fluorescence emission at 701 nm in Lhca2 is not yet clear. We report a detailed characterization of the Lhca2 subunit using molecular biology, biochemistry, and spectroscopy and show that the 701-nm emission form originates from a broad absorption band at 690 nm. Spectroscopy on recombinant mutant proteins assesses that this band represents the low en...
AbstractPhotosystem I (PSI) plays a major role in the light reactions of photosynthesis. In higher p...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
The outer antenna of higher-plant PSI (Photosystem I) is composed of four complexes [Lhc (light-harv...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
Photosystem I of higher plants is characterized by a typically long wavelength fluorescence emission...
The red-most fluorescence emission of photosystem I (733 nm at 4 K) is associated with the Lhca4 sub...
Photosystem I of higher plants is characterized by a typically long wavelength fluorescence emission...
The red-most fluorescence emission of photosystem I (733 nm at 4 K) is associated with the Lhca4 sub...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
AbstractThe isolated subcomplex LHCI-730 of plant photosystem I (PSI) chlorophyll (Chl) a/b binding ...
AbstractThe selectively red excited emission spectrum, at room temperature, of the in vitro reconsti...
AbstractIn this work the spectroscopic properties of the special low-energy absorption bands of the ...
AbstractThe red antenna states of the external antenna complexes of higher plant photosystem I, know...
AbstractThe Lhca antenna complexes of photosystem I (PSI) have been characterized by comparison of n...
Photosystem I (PSI) plays a major role in the light reactions of photosynthesis. In higher plants, P...
AbstractPhotosystem I (PSI) plays a major role in the light reactions of photosynthesis. In higher p...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
The outer antenna of higher-plant PSI (Photosystem I) is composed of four complexes [Lhc (light-harv...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
Photosystem I of higher plants is characterized by a typically long wavelength fluorescence emission...
The red-most fluorescence emission of photosystem I (733 nm at 4 K) is associated with the Lhca4 sub...
Photosystem I of higher plants is characterized by a typically long wavelength fluorescence emission...
The red-most fluorescence emission of photosystem I (733 nm at 4 K) is associated with the Lhca4 sub...
Photosystem I of higher plants is characterized by red-shifted spectral forms deriving from chloroph...
AbstractThe isolated subcomplex LHCI-730 of plant photosystem I (PSI) chlorophyll (Chl) a/b binding ...
AbstractThe selectively red excited emission spectrum, at room temperature, of the in vitro reconsti...
AbstractIn this work the spectroscopic properties of the special low-energy absorption bands of the ...
AbstractThe red antenna states of the external antenna complexes of higher plant photosystem I, know...
AbstractThe Lhca antenna complexes of photosystem I (PSI) have been characterized by comparison of n...
Photosystem I (PSI) plays a major role in the light reactions of photosynthesis. In higher plants, P...
AbstractPhotosystem I (PSI) plays a major role in the light reactions of photosynthesis. In higher p...
In this work the spectroscopic properties of the special low-energy absorption bands of the outer an...
The outer antenna of higher-plant PSI (Photosystem I) is composed of four complexes [Lhc (light-harv...