Analysis of the Absorption Spectrum of Photosystem II Reaction Centers: Temperature Dependence, Pigment Assignment, and Inhomogeneous Broadening
- 1 January 1996
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 35 (3) , 829-842
- https://doi.org/10.1021/bi9513158
Abstract
In this study a model for decomposition and pigment assignment of the low-temperature (10 K) absorption spectrum of the photosystem II reaction center (D1−D2−cytochrome b559 complex, PSII-RC) is developed. It is based on theoretical calculations of the line shapes of the inhomogeneously broadened pigment spectra, taking into account electron−phonon coupling. The analysis is performed under the hypothesis that exciton coupling is weak, except for the P680 special pair. In this way a detailed decomposition of the absorption spectrum is obtained. Within the model the temperature dependence of the spectrum can be well explained. It is mainly caused by the temperature-dependent changes of the homogeneous absorption spectra of the individual pigments in the PSII-RC. In addition, slight changes in the inhomogeneous distribution functions have to be taken into account. Two slightly different parameter sets are found. We prefer one of these parameter sets which indicates that an accessory chlorophyll (Chl) is the lowest energy pigment in the RC core and that the two antenna Chls have their spectral maxima at 667.7 and 677.9 nm, respectively. The relationship between the shape of the absorption spectrum and the pigment stoichiometry of the sample (ratio of chlorophyll a:pheophytin a), which was noticed by comparison of a variety of different independently prepared samples, can be explained by the presence of “additional” Chl molecules which are nonstoichiometrically bound to part of the PSII-RCs. These Chls can be grouped into three spectrally distinguishable pools. One of them has its absorption maximum at about 683 nm and is responsible for the prominent shoulder that is present in the 10 K absorption spectra of most PSII-RC preparations. Our results suggest that the Chl content of the samples has been underestimated in many spectroscopic studies on the PSII-RC.Keywords
This publication has 43 references indexed in Scilit:
- Pigment stoichiometry of the Photosystem II reaction center from higher plantsBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1994
- Characterization of a D1‐D2‐cyt b‐559 complex containing 4 chlorophyll a/2 pheophytin a isolated with the use of MgSO4FEBS Letters, 1994
- Primary processes and structure of the Photosystem II reaction center: II. Low-temperature picosecond fluorescence kinetics of a D1-D2-cyt-b-559 reaction center complex isolated by short Triton exposureBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1993
- D1-D2-cytochrome b559 complex from the aquatic plant Spirodela oligorrhiza: correlation between complex integrity, spectroscopic properties, photochemical activity, and pigment compositionBiochemistry, 1990
- Excited-state structure and energy-transfer dynamics of two different preparations of the reaction center of photosystem II: a hole-burning studyThe Journal of Physical Chemistry, 1990
- Comparison of the Dl/D2/cytochrome b559 reaction centre complex of photosystem two isolated by two different methodsFEBS Letters, 1990
- Chlorophyll a and β‐carotene content in the D1/D2/cytochrome b‐559 reaction center complex from spinachFEBS Letters, 1990
- Chlorophyll and cytochrome b‐559 content of the photochemical reaction center of photosystem IIFEBS Letters, 1989
- Spectral properties of stabilized D1/D2/cytochrome b‐559 photosystem II reaction center complex Effects of Triton X‐100, the redox state of pheophytin, and β‐caroteneFEBS Letters, 1989
- High-resolution optical spectra of chlorophyll moleculesSpectrochimica Acta Part A: Molecular Spectroscopy, 1985