期刊论文详细信息
FEBS Letters
On the origin of the `35‐μs kinetics' of P680+⋅ reduction in photosystem II with an intact water oxidising complex
Reifarth, F1  Christen, G1  Renger, G1 
[1] Max-Volmer-Institute for Biophysical Chemistry and Biochemistry, Technical University Berlin, Straße des 17. Juni 135, 10623 Berlin, Germany
关键词: P680+⋅ reduction;    Fluorescence rise;    Photosystem II;    35-μs kinetics;    3Car;    carotenoid triplet;    Chl;    chlorophyll;    DCBQ;    2;    6-dichloro-p-benzoquinone;    FWHM;    full width at half maximum;    LHC II;    light harvesting complex II;    MES;    morpholinoethane sulfonic acid;    P680;    photoactive chlorophyll of PS II;    PS II;    photosystem II;    WOC;    water oxidising complex;    YZ;    redox active tyrosine between WOC and P680;   
DOI  :  10.1016/S0014-5793(98)00552-3
学科分类:生物化学/生物物理
来源: John Wiley & Sons Ltd.
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【 摘 要 】

The origin of the `35-μs kinetics' of P680+⋅ reduction in photosystem II (PS II) with an intact water oxidising complex has been analysed by comparative measurements of laser flash induced changes of the 830-nm absorption and the relative quantum yield of chlorophyll (Chl) fluorescence. The latter parameter was monitored at a time resolution of 500 ns by using newly developed home built equipment [Reifarth, F., Christen, G. and Renger, G. (1997) Photosynth. Res. 51, 231–242]. It was found that: (i) the amplitudes of the unresolved ns-kinetics of both 830-nm absorption changes and the rise of fluorescence yield exhibit virtually the same period four oscillation pattern when dark adapted samples are excited with a train of saturating laser flashes; (ii) the corresponding oscillation patterns of the normalised extent of the 35-μs kinetics under identical excitation conditions are strikingly different with maxima after the 3rd and 5th flash for the 830-nm absorption changes vs. pronounced maxima after the 4th and 8th flash for the rise of the fluorescence yield. The period four oscillations unambiguously show that the `35-μs kinetics' of P680+⋅ reduction are characteristic for reactions in PS II entities with an intact water oxidising complex. However, the disparity of the oscillation patterns of (ii) indicates that in contrast to the ns components of P680+⋅ reduction the 35-μs kinetics do not reflect exclusively an electron transfer from YZ to P680+⋅. It is inferred that a more complex reaction takes place which comprises at least two processes: (a) P680+⋅ reduction by YZ and (b) coupled and/or competing reaction(s) which give rise to additional changes of the chlorophyll fluorescence yield.

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