Optical characterization of Photosystem II electron donors |
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Authors: | Jan P. Dekker Hans J. Van Gorkom Martin Brok Luberthus Ouwehand |
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Affiliation: | Department of Biophysics, Huygens Laboratory of the State University, P.O. Box 9504, 2300 RA Leiden The Netherlands |
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Abstract: | ![]() Detailed absorbance difference spectra are reported for the Photosystem II acceptor Q, the secondary donor Z, and the donor involved in photosynthetic oxygen evolution which we call M. The spectra of Z and Q could be resolved by analysis of flash-induced kinetics of prompt and delayed fluorescence, EPR signal IIf and absorbance changes in Tris-washed system II preparations in the presence of ferricyanide and 3-(3′,4′-dichlorophenyl)-1,1-dimethylurea (DCMU). The spectrum of Z oxidation consists mainly of positive bands at 260, 300 and 390–450 nm on which a chlorophyll a band shift around 438 nm is superimposed, and is largely pH-independent as is also the case for the spectrum of Q reduction. The re-reduction of Z+ occurred in the millisecond time range, and could be explained by a competition between back reaction with Q? (120 ms at pH 6.0) and reduction by ferrocyanide. When the Tris treatment is omitted the preparations evolve oxygen, and the photoreduction of Q (with DCMU present) is accompanied by the oxidation of M. The Q spectrum being known, the spectrum of the oxidation of M could be determined as well. It consists of a broad, asymmetric increase peaking near 305 nm and of a Chl a band shift, which is about the same as that accompanying Z in Tris-washed system II. Comparison with spectra of model compounds suggests that Z is a bound plastoquinol which is oxidized to the semiquinone cation and that the oxidation of M is an Mn(III) → Mn(IV) transition. |
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Keywords: | Photosystem II Water oxidation Redox center Absorbance difference spectrum ESR Flash-induced kinetics (Spinach) Chl chlorophyll DCMU 3(3′,4′-dichlorophenyl)-1,1-dimethylurea DPC Mes 4-morpholineethanesulfonic acid Hepes 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid PS II Photosystem II |
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